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Zagatina A, Ciampi Q, Peteiro JV, Kalinina E, Begidova I, Padang R, Boshchenko A, Merli E, Lisi M, Rodriguez-Zanella H, Kobal S, Agoston G, Varga A, Wierzbowska-Drabik K, Kasprzak JD, Arbucci R, Zhuravleva O, Čelutkienė J, Lowenstein J, Ratanasit NC, Colonna P, Carerj S, Pepi M, Pellikka PA, Picano E. Left atrial function during exercise stress echocardiography as a sign of paroxysmal/persistent atrial fibrillation. Cardiovasc Ultrasound 2024; 22:13. [PMID: 39491022 PMCID: PMC11533336 DOI: 10.1186/s12947-024-00332-0] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 06/26/2024] [Accepted: 09/23/2024] [Indexed: 11/05/2024] Open
Abstract
OBJECTIVE Atrial cardiomyopathy is closely associated with atrial fibrillation (AF), and some patients exhibit no dysfunction at rest but demonstrate evident changes in left atrial (LA) function and LA volume during exercise. This study aimed to identify distinguishing signs during exercise stress echocardiography (ESE) among patients in sinus rhythm (SR), with and without history of paroxysmal/persistent AF (PAF). METHODS A prospective cohort of 1055 patients in SR was enrolled across 12 centers. The main study cohort was divided into two groups: the modeling group (n = 513) and the verification group (n = 542). All patients underwent ESE, which included B-lines, LA volume index (LAVi), and LA strain of the reservoir phase (LASr). RESULTS Age, resting and stress LAVi and LASr, and B-lines were identified as a combination of detectors for PAF in both groups. In the entire cohort, aside from resting and stress LAVi and LASr, additional parameters differentiating PAF and non-PAF patients were the presence of systemic hypertension, exercise E/e' > 7, worse right ventricle (RV) contraction during exercise (∆ tricuspid annular plane systolic excursion < 5 mm), a lower left ventricular contractile reserve (< 1.6), and a reduced chronotropic reserve (heart rate reserve < 1.64). The composite score, summing all 9 items, yielded a score of > 4 as the best sensitivity (79%) and specificity (65%). CONCLUSION ESE can complement rest echocardiography in the identification of previous PAF in patients with SR through the evaluation of LA functional reservoir and volume reserve, LV chronotropic, diastolic, and systolic reserve, and RV contractile reserve.
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Affiliation(s)
- Angela Zagatina
- Cardiology Department, Research Cardiocenter "Medika", St. Petersburg, Russian Federation.
| | - Quirino Ciampi
- Fatebenefratelli Hospital of Benevento, Benevento, Italy
| | - Jesus Vazquez Peteiro
- CHUAC- Complexo Hospitalario Universitario A Coruna- University of A Coruna, La Coruna, Spain
| | - Elena Kalinina
- Cardiology Department, Research Cardiocenter "Medika", St. Petersburg, Russian Federation
| | - Irina Begidova
- Cardiology Department, Research Cardiocenter "Medika", St. Petersburg, Russian Federation
| | - Ratnasari Padang
- Department of Cardiovascular Medicine, Mayo Clinic, Rochester, MN, USA
| | - Alla Boshchenko
- Cardiology Research Institute, Tomsk National Research Medical Centre of the Russian Academy of Sciences, Tomsk, Russian Federation
| | - Elisa Merli
- Cardiology Unit, Ospedale Per Gli Infermi, Faenza, Italy
| | - Matteo Lisi
- Department of Cardiovascular Disease, Division of Cardiology, AUSL Romagna, Ospedale S. Maria Delle Croci, Ravenna, Italy
| | | | - Sergio Kobal
- Echocardiography Unit, Soroka University Medical Center, Be'er Sheva, Israel
| | - Gergely Agoston
- Institute of Family Medicine, University of Szeged, Szeged, Hungary
| | - Albert Varga
- Institute of Family Medicine, University of Szeged, Szeged, Hungary
| | | | - Jarosław D Kasprzak
- First Department and Chair of Cardiology, Medical University of Lodz, Bieganski Specialty Hospital, Lodz, Poland
| | | | - Olga Zhuravleva
- Cardiology Research Institute, Tomsk National Research Medical Centre of the Russian Academy of Sciences, Tomsk, Russian Federation
| | - Jelena Čelutkienė
- Centre of Cardiology and Angiology, Clinic of Cardiac and Vascular Diseases, Institute of Clinical Medicine, Faculty of Medicine, Vilnius University, Centre of Innovative Medicine, Vilnius, Lithuania
| | | | | | - Paolo Colonna
- Department of Cardiology, Policlinico Hospital, Bari, Italy
| | - Scipione Carerj
- Divisione Di Cardiologia, Policlinico UniversitarioUniversità Di Messina, Messina, Italy
| | - Mauro Pepi
- Centro Cardiologico Monzino, IRCCS, Milan, Italy
| | | | - Eugenio Picano
- Cardiology Clinic, University Center Serbia, Medical School, University of Belgrade, Belgrade, Serbia
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Abramenko EE, Ryabova TR, Ryabov VV, Boshchenko AA, Karpov RS. [Stress-Echocardiography in Low-risk Acute Coronary Syndrome Without Persistent ST-segment Elevation Diagnostic Algorithm]. KARDIOLOGIIA 2024; 64:63-71. [PMID: 38597764 DOI: 10.18087/cardio.2024.3.n2430] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Subscribe] [Scholar Register] [Received: 02/07/2023] [Accepted: 05/05/2023] [Indexed: 04/11/2024]
Abstract
This review addresses the capabilities of stress EchoCG as a simple, non-invasive, non-radiation method for diagnosing occult disorders of coronary blood flow in patients with non-ST-elevation acute coronary syndrome on a low-risk electrocardiogram. The capabilities of the enhanced stress EchoCG protocol are based on supplementing the standard detection of transient disturbances of local contractility, generally associated with coronary artery obstruction, with an assessment of the heart rate reserve, coronary reserve and other parameters. This approach is considered promising for a more complete characterization of heart function during exercise and an accurate prognosis of the clinical case, which allows determining the tactics for patient management not limited to selection for myocardial revascularization.
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Affiliation(s)
- E E Abramenko
- Research Institute of Cardiology, Tomsk National Research Medical Center of the Russian Academy of Sciences, Tomsk
| | - T R Ryabova
- Research Institute of Cardiology, Tomsk National Research Medical Center of the Russian Academy of Sciences, Tomsk
| | - V V Ryabov
- Research Institute of Cardiology, Tomsk National Research Medical Center of the Russian Academy of Sciences, Tomsk
| | - A A Boshchenko
- Research Institute of Cardiology, Tomsk National Research Medical Center of the Russian Academy of Sciences, Tomsk
| | - R S Karpov
- Research Institute of Cardiology, Tomsk National Research Medical Center of the Russian Academy of Sciences, Tomsk
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3
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Wang S, Wang Y, Wang S. The role of stress echocardiography in identifying cardiotoxicity: an in-depth exploration. Front Cardiovasc Med 2024; 11:1236966. [PMID: 38343875 PMCID: PMC10853441 DOI: 10.3389/fcvm.2024.1236966] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 06/08/2023] [Accepted: 01/15/2024] [Indexed: 01/06/2025] Open
Abstract
Cancer treatment might cause heart failure and deteriorate the patients' quality of life. Despite the wide use of conventional echocardiography, it often fails to detect cardiotoxicity until advanced cardiac dysfunction at potentially irreversible stages. Advanced techniques, such as three-dimensional imaging and strain analysis in stress echocardiography, have shown promise in identifying cardiotoxicity at subclinical stages, even when traditional measures remain within normal ranges. These novel techniques have been shown to identify cardiac impairment in 30%-50% of the patients undergoing potentially cardiotoxic chemotherapy, which allows for early intervention and enhanced patient management. Although professional societies are advocating for the inclusion of these techniques into routine monitoring protocols, more research is needed to optimize and standardize their use across various centers and chemotherapeutic agents. This review explores the role of stress echocardiography in the early detection and monitoring of chemotherapy-induced cardiotoxicity. It delves into current knowledge and emerging research, aiming to provide a comprehensive understanding and to highlight areas worthy of further investigation.
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Affiliation(s)
- Sijia Wang
- Ultrasound in Cardiac Electrophysiology and Biomechanics Key Laboratory of Sichuan Province, Sichuan Provincial People's Hospital, School of Medicine, University of Electronic Science and Technology of China, Chengdu, China
| | - Yi Wang
- Ultrasound in Cardiac Electrophysiology and Biomechanics Key Laboratory of Sichuan Province, Sichuan Provincial People's Hospital, School of Medicine, University of Electronic Science and Technology of China, Chengdu, China
| | - Shuang Wang
- Department of Geriatrics, The People's Hospital of Changshou, Chongqing, China
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4
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Ciampi Q, Pepi M, Antonini-Canterin F, Barbieri A, Barchitta A, Faganello G, Miceli S, Parato VM, Tota A, Trocino G, Abbate M, Accadia M, Alemanni R, Angelini A, Anglano F, Anselmi M, Aquila I, Aramu S, Avogadri E, Azzaro G, Badano L, Balducci A, Ballocca F, Barbarossa A, Barbati G, Barletta V, Barone D, Becherini F, Benfari G, Beraldi M, Bergandi G, Bilardo G, Binno SM, Bolognesi M, Bongiovi S, Bragato RM, Braggion G, Brancaleoni R, Bursi F, Dessalvi CC, Cameli M, Canu A, Capitelli M, Capra ACM, Carbonara R, Carbone M, Carbonella M, Carrabba N, Casavecchia G, Casula M, Chesi E, Cicco S, Citro R, Cocchia R, Colombo BM, Colonna P, Conte M, Corrado G, Cortesi P, Cortigiani L, Costantino MF, Cozza F, Cucchini U, D’Angelo M, Da Ros S, D’Andrea F, D’Andrea A, D’Auria F, De Caridi G, De Feo S, De Matteis GM, De Vecchi S, Del Giudice C, Dell’Angela L, Paoli LD, Dentamaro I, Destefanis P, Di Bella G, Di Fulvio M, Di Gaetano R, Di Giannuario G, Di Gioia A, Di Martino LFM, Di Muro C, Di Nora C, Di Salvo G, Dodi C, Dogliani S, Donati F, Dottori M, Epifani G, Fabiani I, Ferrara F, Ferrara L, Ferrua S, Filice G, Fiorino M, Forno D, Garini A, Giarratana GA, et alCiampi Q, Pepi M, Antonini-Canterin F, Barbieri A, Barchitta A, Faganello G, Miceli S, Parato VM, Tota A, Trocino G, Abbate M, Accadia M, Alemanni R, Angelini A, Anglano F, Anselmi M, Aquila I, Aramu S, Avogadri E, Azzaro G, Badano L, Balducci A, Ballocca F, Barbarossa A, Barbati G, Barletta V, Barone D, Becherini F, Benfari G, Beraldi M, Bergandi G, Bilardo G, Binno SM, Bolognesi M, Bongiovi S, Bragato RM, Braggion G, Brancaleoni R, Bursi F, Dessalvi CC, Cameli M, Canu A, Capitelli M, Capra ACM, Carbonara R, Carbone M, Carbonella M, Carrabba N, Casavecchia G, Casula M, Chesi E, Cicco S, Citro R, Cocchia R, Colombo BM, Colonna P, Conte M, Corrado G, Cortesi P, Cortigiani L, Costantino MF, Cozza F, Cucchini U, D’Angelo M, Da Ros S, D’Andrea F, D’Andrea A, D’Auria F, De Caridi G, De Feo S, De Matteis GM, De Vecchi S, Del Giudice C, Dell’Angela L, Paoli LD, Dentamaro I, Destefanis P, Di Bella G, Di Fulvio M, Di Gaetano R, Di Giannuario G, Di Gioia A, Di Martino LFM, Di Muro C, Di Nora C, Di Salvo G, Dodi C, Dogliani S, Donati F, Dottori M, Epifani G, Fabiani I, Ferrara F, Ferrara L, Ferrua S, Filice G, Fiorino M, Forno D, Garini A, Giarratana GA, Gigantino G, Giorgi M, Giubertoni E, Greco CA, Grigolato M, Marra WG, Holzl A, Iaiza A, Iannaccone A, Ilardi F, Imbalzano E, Inciardi RM, Inserra CA, Iori E, Izzo A, La Rosa G, Labanti G, Lanzone AM, Lanzoni L, Lapetina O, Leiballi E, Librera M, Conte CL, Monaco ML, Lombardo A, Luciani M, Lusardi P, Magnante A, Malagoli A, Malatesta G, Mancusi C, Manes MT, Manganelli F, Mantovani F, Manuppelli V, Marchese V, Marinacci L, Mattioli R, Maurizio C, Mazza GA, Mazza S, Melis M, Meloni G, Merli E, Milan A, Minardi G, Monaco A, Monte I, Montresor G, Moreo A, Mori F, Morini S, Moro C, Morrone D, Negri F, Nipote C, Nisi F, Nocco S, Novello L, Nunziata L, Perini AP, Parodi A, Pasanisi EM, Pastorini G, Pavasini R, Pavoni D, Pedone C, Pelliccia F, Pelliciari G, Pelloni E, Pergola V, Perillo G, Petruccelli E, Pezzullo C, Piacentini G, Picardi E, Pinna G, Pizzarelli M, Pizzuti A, Poggi MM, Posteraro A, Privitera C, Rampazzo D, Ratti C, Rettegno S, Ricci F, Ricci C, Rolando C, Rossi S, Rovera C, Ruggieri R, Russo MG, Sacchi N, Saladino A, Sani F, Sartori C, Scarabeo V, Sciacqua A, Scillone A, Scopelliti PA, Scorza A, Scozzafava A, Serafini F, Serra W, Severino S, Simeone B, Sirico D, Solari M, Spadaro GL, Stefani L, Strangio A, Surace FC, Tamborini G, Tarquinio N, Tassone EJ, Tavarozzi I, Tchana B, Tedesco G, Tinto M, Torzillo D, Totaro A, Triolo OF, Troisi F, Tusa M, Vancheri F, Varasano V, Venezia A, Vermi AC, Villari B, Zampi G, Zannoni J, Zito C, Zugaro A, Picano E, Carerj S. Stress Echocardiography in Italian Echocardiographic Laboratories: A Survey of the Italian Society of Echocardiography and Cardiovascular Imaging. J Cardiovasc Echogr 2023; 33:125-132. [PMID: 38161775 PMCID: PMC10756319 DOI: 10.4103/jcecho.jcecho_48_23] [Show More Authors] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 09/05/2023] [Accepted: 09/07/2023] [Indexed: 01/03/2024] Open
Abstract
BACKGROUND The Italian Society of Echography and Cardiovascular Imaging (SIECVI) conducted a national survey to understand the volumes of activity, modalities and stressors used during stress echocardiography (SE) in Italy. METHODS We analyzed echocardiography laboratory activities over a month (November 2022). Data were retrieved through an electronic survey based on a structured questionnaire, uploaded on the SIECVI website. RESULTS Data were obtained from 228 echocardiographic laboratories, and SE examinations were performed in 179 centers (80.6%): 87 centers (47.5%) were in the northern regions of Italy, 33 centers (18.4%) were in the central regions, and 61 (34.1%) in the southern regions. We annotated a total of 4057 SE. We divided the SE centers into three groups, according to the numbers of SE performed: <10 SE (low-volume activity, 40 centers), between 10 and 39 SE (moderate volume activity, 102 centers) and ≥40 SE (high volume activity, 37 centers). Dipyridamole was used in 139 centers (77.6%); exercise in 120 centers (67.0%); dobutamine in 153 centers (85.4%); pacing in 37 centers (21.1%); and adenosine in 7 centers (4.0%). We found a significant difference between the stressors used and volume of activity of the centers, with a progressive increase in the prevalence of number of stressors from low to high volume activity (P = 0.033). The traditional evaluation of regional wall motion of the left ventricle was performed in all centers, with combined assessment of coronary flow velocity reserve (CFVR) in 90 centers (50.3%): there was a significant difference in the centers with different volume of SE activity: the incidence of analysis of CFVR was significantly higher in high volume centers compared to low - moderate - volume (32.5%, 41.0% and 73.0%, respectively, P < 0.001). The lung ultrasound (LUS) was assessed in 67 centers (37.4%). Furthermore for LUS, we found a significant difference in the centers with different volume of SE activity: significantly higher in high volume centers compared to low - moderate - volume (25.0%, 35.3% and 56.8%, respectively, P < 0.001). CONCLUSIONS This nationwide survey demonstrated that SE was significantly widespread and practiced throughout Italy. In addition to the traditional indication to coronary artery disease based on regional wall motion analysis, other indications are emerging with an increase in the use of LUS and CFVR, especially in high-volume centers.
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Affiliation(s)
- Quirino Ciampi
- Cardiology Division, Fatebenefratelli Hospital, Benevento, Italy
| | - Mauro Pepi
- Cardiology Division, Centro Cardiologico Monzino, IRCCS, Milano, Italy
| | - Francesco Antonini-Canterin
- Department of Rehabilitative Cardiology, Rehabilitative Hospital High Speciality, Motta di Livenza, TV, Italy
| | - Andrea Barbieri
- Department of Biomedical, Metabolic and Neural Sciences, Cardiology Division, University of Modena and Reggio Emilia, Policlinico di Modena, Modena, Italy
| | - Agata Barchitta
- Semi Intensive Care Department, Padova University Hospital, Padova, Italy
| | | | - Sofia Miceli
- Geriatric Division, University Hospital Renato Dulbecco, Catanzaro, Italy
| | - Vito Maurizio Parato
- Cardiology Division, Madonna del Soccorso Hospital, San Benedetto del Tronto, AP, Italy
| | - Antonio Tota
- Cardiology Division, Polyclinic Hospital, Bari, Italy
| | - Giuseppe Trocino
- Non Invasive Cardiac Imaging Department, Fondazione IRCCS San Gerardo dei Tintori, Monza, Italy
| | - Massimiliana Abbate
- Cardiology Vanvitelli Division, AORN dei Colli, Monaldi Hospital, Napoli, Italy
| | - Maria Accadia
- Cardiology Division, Del Mare Hospital, Ponticelli, NA, Italy
| | - Rossella Alemanni
- Cardiac Surgery Division, Casa Sollievo Della Sofferenza Hospital, San Giovanni Rotondo, Italy
| | | | | | - Maurizio Anselmi
- Cardiology Division, Fracastoro Hospital, San Bonifacio, VR, Italy
| | - Iolanda Aquila
- Cardiology Division, University Hospital Mater Domini, Catanzaro, Italy
| | - Simona Aramu
- Cardiology Division, San Martino Hospital, Oristano, Italy
| | - Enrico Avogadri
- Department of Rehabilitative Cardiology, SS Trinità Hospital, Fossano, CN, Italy
| | | | - Luigi Badano
- Department of Medicine and Surgery, University MIlano-Bicocca, Integrated Cardiovascular Diagnosi Unit, Istituto Auxologico Italiano, IRCCS, Italy
| | - Anna Balducci
- Pediatric Cardiology Division, Polyclinico S. Orsola-Malpighi IRCCS Hospital, Bologna, Italy
| | | | | | | | - Valentina Barletta
- Cardiology 2 Division, Cardiac Vascular Thoracic Department, Pisa University Hospital, Pisa, Italy
| | - Daniele Barone
- Cardiology Division, S. Andrea Hospital, La Spezia, Pisa, Italy
| | - Francesco Becherini
- Cardiology and Cardiovascular Medicine Division, Fondazione Toscana Gabriele Monasterio, Pisa, Italy
| | | | | | | | | | | | - Massimo Bolognesi
- Center for Internal Medicine and Sports Cardiology, Local Health Unit of Romagna, Cesena, FC, Italy
| | - Stefano Bongiovi
- Cardiology Division, Immacolata Concezione Civil Hospital, Piove di Sacco, PD, Italy
| | - Renato Maria Bragato
- Echocardiography and Emergency Cardiovascular Care Division, Humanitas Clinical and Research Centre, Rozzano, Italy
| | - Gabriele Braggion
- Cardiology Division, Santa Maria Regina Degli Angeli Hospital, Adria, RO, Italy
| | | | - Francesca Bursi
- Department of Health Sciences, Cardiology Division, University of Milan, San Paolo Hospital, ASST Santi Paolo e Carlo, Milano, Italy
| | | | - Matteo Cameli
- Cardiology Division, Polyclinic Le Scotte Hospital, Siena, Italy
| | - Antonella Canu
- Cardiology Division, Santissima Annunziata Hospital, Siena, Italy
| | - Mariano Capitelli
- Internal Medicine Division, Pavullo Hospital, Pavullo nel Frignano, MO, Italy
| | | | - Rosa Carbonara
- Cardiology Division, Maugeri Institute IRCCS, Bari, Italy
| | - Maria Carbone
- Emergency Medicine Division, St. Anna and St. Sebastiano Hospital, Caserta, Italy
| | - Marco Carbonella
- Cardiology Division, SS Maria Addolorata Hospital, Eboli, SA, Italy
| | - Nazario Carrabba
- Cardiology Division, Careggi University Hospital, Firenze, Italy
| | - Grazia Casavecchia
- Cardiology Division, University Hospital Ospedali Riuniti, Foggia, Italy
| | - Margherita Casula
- Cardiology Division, Nostra Signora di Bonaria Hospital, San Gavino Monreale, SU, Italy
| | - Elena Chesi
- Neonatology Division, S. Maria Nuova Hospital, Reggio Emilia, Italy
| | - Sebastiano Cicco
- Department of Precision and Regenerative Medicine and Ionian Area, Unit of Internal Medicine “G. Baccelli” and Unit of Hypertension “A.M. Pirrelli”, University of Bari Aldo Moro Medical School, AUOC Policlinico di Bari, Bari, Italy
| | - Rodolfo Citro
- Echocardiography Division, University Hospital San Giovanni di Dio e Ruggi d’Aragona, Salerno, Italy
| | | | | | - Paolo Colonna
- Cardiology Division, Polyclinic Hospital, Bari, Italy
| | - Maddalena Conte
- Department of Translational Medical Sciences, University of Naples Federico II, Naples, Italy
| | | | - Pietro Cortesi
- Cardioncology Division, IRCCS Istituto Romagnolo per lo Studio dei Tumori “Dino Amadori”, Meldola, FC, Italy
| | | | | | - Fabiana Cozza
- Cardiology Division, Poliambulanza Foundation Hospital, Brescia, Italy
| | - Umberto Cucchini
- Cardiology Division, San Bassiano Hospital, Bassano Del Grappa, VI, Italy
| | - Myriam D’Angelo
- Cardiology Division, Bonino Pulejo IRCCS Hospital, Messina, Italy
| | - Santina Da Ros
- Division of Cardiology, Riuniti Padova Sud Hospital, Monselice, PD, Italy
| | | | | | - Francesca D’Auria
- Vascular - Endovascular Surgery Division, University Hospital San Giovanni di Dio e Ruggi d’Aragona, Salerno, Italy
| | - Giovanni De Caridi
- Vascular Surgery Division, University Hospital Polyclinic G. Martino, University of Messina, Messina, Italy
| | - Stefania De Feo
- Cardiology Division, P Pederzoli Hospital, Peschiera del Garda, VR, Italy
| | | | - Simona De Vecchi
- Cardiology Division, Major University Hospital of Charity, Novara, Italy
| | | | - Luca Dell’Angela
- Cardiology Division, Gorizia-Monfalcone Hospital, Gorizia, Italy
| | | | - Ilaria Dentamaro
- Cardiology Division, Miulli Hospital, Acquaviva delle Fonti, BA, Italy
| | - Paola Destefanis
- Cardiology Division, San Luigi Gonzaga University Hospital, Orbassano, Italy
| | - Gianluca Di Bella
- Cardiology Division, University Hospital Polyclinic G. Martino, University of Messina, Messina, Italy
| | | | | | | | - Angelo Di Gioia
- Cardiology Division, St. Giuliano Hospital, Giugliano in Campania, NA, Italy
| | | | | | - Concetta Di Nora
- Cardiology Division, Azienda Sanitaria Universitaria Friuli Centrale, Udine, Italy
| | - Giovanni Di Salvo
- Pediatric Cardiology and Congenital Heart Disease Division, Padova University Hospital, Padova, Italy
| | - Claudio Dodi
- Cardiology Division, San Antonino Clinic, Piacenza, Italy
| | - Sarah Dogliani
- Cardiology Division, SS. Annunziata Civil Hospital, Savigliano, Italy
| | - Federica Donati
- Pascia Center, Polyclinic, University Hospital Modena Polyclinic, Modena, Italy
| | - Melissa Dottori
- Cardiology Division, Marche University Hospital, Ancona, Italy
| | - Giuseppe Epifani
- Internal Medicine Division, Camberlingo Hospital, Francavilla Fontana, BR, Italy
| | - Iacopo Fabiani
- Cardiology and Cardiovascular Medicine Division, Fondazione Toscana Gabriele Monasterio, Pisa, Italy
| | - Francesca Ferrara
- Internal Medicine Division, University Hospital Modena Polyclinic, Modena, Italy
| | - Luigi Ferrara
- Cardiology Division, Villa Dei Fiori Clinic, Acerra, Italy
| | | | - Gemma Filice
- Cardiology Division, Annunziata Hospital, Cosenza, Italy
| | - Maria Fiorino
- Cardiology Division, ARNAS Civico Hospital, Cremona, Italy
| | - Davide Forno
- Cardiology Division, Maria Vittoria Hospital, Torino, Italy
| | | | | | - Giuseppe Gigantino
- Cardiology Division, University Hospital San Giovanni di Dio e Ruggi d’Aragona, Salerno, Italy
| | - Mauro Giorgi
- Cardiology Division, Molinette Hospital - Città della Salute e della Scienza, Torino, Italy
| | | | | | | | | | - Anna Holzl
- Internal Medicine Division, Quisisana Clinic, Italy
| | - Alessandra Iaiza
- Cardiac Surgery Division, San Camillo-Fornalinini Hospital, Roma, Italy
| | - Andrea Iannaccone
- Internal Medicine Division, Ordine Mauriziano Hospital, Torino, Italy
| | - Federica Ilardi
- Cardiology Division, Federico II University Hospital, Napoli, Italy
| | - Egidio Imbalzano
- Internal Medicine Division, University Hospital Polyclinic G. Martino, University of Messina, Messina, Italy
| | | | | | - Emilio Iori
- Cardiology Division, New Civil Hospital, Sassuolo, Italy
| | - Annibale Izzo
- Cardiology Division, St. Anna and St. Sebastiano Hospital, Caserta, Italy
| | | | | | | | - Laura Lanzoni
- Cardiology Division, Sacro Cuore Don Calabria IRCCS Hospital, Verona, Italy
| | | | - Elisa Leiballi
- Cardiology and Rehabilitative Division, Azienda Sanitaria Friuli Occidentale (ASFO), Health Care, Sacile (Pd), Italy
| | | | - Carmenita Lo Conte
- Cardiology Division, St. Ottone Frangipane Hospital, Ariano Irpino, AV, Italy
| | - Maria Lo Monaco
- Cardiology Division, Humanitas Gavazzeni Hospital, Bergamo, Italy
| | - Antonella Lombardo
- Cardiology Division, Fondazione Policlinico A. Gemelli-IRCCS, Università Cattolica, Roma, Italy
| | | | - Paola Lusardi
- Cardiology and Cardiac Surgery Division, Maria Pia Hospital, Torino, Italy
| | - Antonio Magnante
- Cardiology Division, Madonna delle Grazie Hospital, Matera, Italy
| | - Alessandro Malagoli
- Division of Cardiology, Nephro Cardiovascular Department, Baggiovara Hospital, University of Modena and Reggio Emilia, Modena, Italy
| | | | | | | | - Fiore Manganelli
- Cardiology Division, St. Giuseppe Moscati Hospital, Avellino, Italy
| | - Francesca Mantovani
- Cardiology Division, Azienda USL- IRCCS di Reggio Emilia, Reggio Emilia, Italy
| | | | - Valeria Marchese
- Cardiology Division, St. Maria della Speranza Hospital, Battipaglia, SA, Italy
| | - Lina Marinacci
- Cardiology Division, Civil Hospital, Città di Castello, Italy
| | - Roberto Mattioli
- Cardiology Division, IRCCS Multimedica Hospital, Sesto San Giovanni, Italy
| | - Civelli Maurizio
- Cardiology Division, European Institute of Oncology, Milano, Italy
| | - Giuseppe Antonio Mazza
- Pediaric Cardiology Division, Regina Margherita Hospital - Città Della Salute e Della Scienza, Torino, Italy
| | - Stefano Mazza
- Cardiology Division, Maggiore St. Andrea Hospital, Vercelli, Italy
| | - Marco Melis
- Cardiology Division, Brotzu Hospital, Cagliari, Italy
| | - Giulia Meloni
- Center for Prevention, Diagnosis and Therapy of Arterial Hypertension and Cardiovascular Complications, St. Camillo Hospital, Sassari, Italy
| | - Elisa Merli
- Cardiology Division, Degli Infermi Hospital, Faenza, RA, Italy
| | - Alberto Milan
- Internal Medicine 4 Division, Molinette Hospital - Città della Salute e Della Scienza, Torino, Italy
| | | | - Antonella Monaco
- Cardiology Outpatient Clinic, Cardiology Outpatient Clinic, Civitanova Marche, MC, Italy
| | - Ines Monte
- Cardiology Division, University Hospital Polyclinic “G.Rodolico-S. Marco”, University of Catania, Catania, Italy
| | | | - Antonella Moreo
- De Gasperis Cardio Center, ASST Grande Ospedale Metropolitano Niguarda, Milano, Italy
| | - Fabio Mori
- Non-invasive Cardiovascular Diagnostic Division, Careggi University Hospital, Firenze, Italy
| | - Sofia Morini
- Cardiology Division, Riuniti della Valdichiana Hospital, Montepulciano, SI, Italy
| | - Claudio Moro
- Cardiology Division, Pio XI Hospital, Desio, MB, Italy
| | | | - Francesco Negri
- Cardiology Division, Azienda Sanitaria Universitaria Friuli Centrale, Udine, Italy
| | - Carmelo Nipote
- Cardiology Division, Civil Hospital, Sant’Agata di Militello, ME, Italy
| | - Fulvio Nisi
- Anesthesia and Intensive Care Division, IRCCS Humanitas Research Hospital, Rozzano, MI, Italy
| | - Silvio Nocco
- Cardiology Division, Sirai Hospital, Carbonia, CI, Italy
| | - Luigi Novello
- Geriatric Division, Valdagno Hospital, Arzignano, VI, Italy
| | - Luigi Nunziata
- Cardiology Division, St. Maria della Pietà Hospital, Nola, NA, Italy
| | | | - Antonello Parodi
- Cardiology Division, Padre Antero Micone Hospital, Genova, Italy
| | | | - Guido Pastorini
- Cardiology Division, Regina Montis Regalis Hospital, Mondovì, CN, Italy
| | - Rita Pavasini
- Cardiology Division, University Hospital of Ferrara, Italy
| | - Daisy Pavoni
- Cardiology Division, Azienda Sanitaria Universitaria Friuli Centrale, Udine, Italy
| | - Chiara Pedone
- Cardiology Division, Maggiore Hospital, Bologna, Italy
| | | | | | | | - Valeria Pergola
- Cardiology Division, Padova University Hospital, Padova, Italy
| | | | | | - Chiara Pezzullo
- Cardiology Division, G.B. Grassi Hospital, Lido di Ostia, Italy
| | - Gerardo Piacentini
- Fetal and Neonatal Cardiology Unit - Fatebenefratelli Isola Tiberina Gemelli Isola Hospital, Roma, Italy
| | - Elisa Picardi
- Cardiology Division, Civic Hospital, Chivasso, Italy
| | - Giovanni Pinna
- Neonatology and Neonatal Intensive Care Division, San Camillo-Fornalinini Hospital, Roma, Italy
| | | | - Alfredo Pizzuti
- Cardiology Outpatient Clinic, Koelliker Hospital, Torino, Italy
| | - Matteo Maria Poggi
- Interdisciplinary Internal Medicine Division, Careggi University Hospital, Firenze, Italy
| | - Alfredo Posteraro
- Cardiology Division, St. Giovanni Evangelista Hospital, Tivoli, Italy
| | | | - Debora Rampazzo
- Cardiology Division, Madonna della Navicella Hospital, Chioggia, Italy
| | - Carlo Ratti
- Cardiology Division, St. Maria Bianca Hospital, Mirandola, Italy
| | | | - Fabrizio Ricci
- Cardiology Division, Ss. Annunziata Hospital, Chieti, Italy
| | - Caterina Ricci
- Cardiology Outpatient Clinic, Casa della Salute “Regina Margherita”, Castelfranco Emilia, MO, Italy
| | | | | | - Chiara Rovera
- Cardiology Division, Civic Hospital, Chivasso, Italy
| | | | | | - Nicola Sacchi
- Medical Division, St. Agostino Hospital, Castiglione del Lago, PG, Italy
| | | | - Francesca Sani
- Cardiology Division, St. Giovanni di Dio Hospital, Firenze, Italy
| | - Chiara Sartori
- Cardiology Division, Santi Antonio e Biagio e Cesare Arrigo Hospital, Alessandria, Italy
| | - Virginia Scarabeo
- Cardiology Division, Camposampiero Hospital, Camposampiero, PD, Italy
| | - Angela Sciacqua
- Geriatric Division, University Hospital Renato Dulbecco, Catanzaro, Italy
| | - Antonio Scillone
- Intensive Cardiac Rehabilitation Unit, Villa del Sole Clinic, Cosenza, Italy
| | | | - Alfredo Scorza
- Cardiology Division, Riuniti Anzio-Nettuno Hospital, Anzio, RM, Italy
| | | | | | - Walter Serra
- Cardiology Division, University Hospital, Parma, Italy
| | | | | | - Domenico Sirico
- Pediatric Cardiology and Congenital Heart Disease Division, Padova University Hospital, Padova, Italy
| | - Marco Solari
- Cardiology Division, St. Giuseppe Hospital, Empoli, FI, Italy
| | | | - Laura Stefani
- Sports Medicine Division, Careggi University Hospital, Firenze, Italy
| | - Antonio Strangio
- Cardiology Division, St. Giovanni di Dio Hospital, Crotone, Italy
| | - Francesca Chiara Surace
- Pediatric Cardiac Surgery and Cardiology Division, Marche University Hospital, Ancona, Italy
| | - Gloria Tamborini
- Cardiology Division, Centro Cardiologico Monzino, IRCCS, Milano, Italy
| | - Nicola Tarquinio
- Internal Medicine Division, IRCCS INRCA Hospital, Osimo AN, Italy
| | | | | | - Bertrand Tchana
- Pediatric Cardiology Division, University Hospital, Parma, Italy
| | | | - Monica Tinto
- Cardiology Division, Mater Salutis Hospital, Legnago, VR, Italy
| | - Daniela Torzillo
- Internal Medicine Division, L. Sacco Hospital, University of Milan, Italy
| | - Antonio Totaro
- Department of Cardiovascular Sciences, Responsible Research Hospital, Campobasso, Italy
- Department of Medicine and Health Sciences “V. Tiberio”, University of Molise, Campobasso, Italy
| | | | - Federica Troisi
- Cardiology Division, Miulli Hospital, Acquaviva delle Fonti, BA, Italy
| | - Maurizio Tusa
- Cardiology Division, St. Donato Polyclinic, San Donato Milanese, Milan, Italy
| | | | - Vincenzo Varasano
- Internal and Emergency Medicine Division, Civil Hospital, Policoro MT, Italy
| | - Amedeo Venezia
- Geriatric Division, Miulli Hospital, Acquaviva delle Fonti, BA, Italy
| | | | - Bruno Villari
- Cardiology Division, Fatebenefratelli Hospital, Benevento, Italy
| | | | - Jessica Zannoni
- Cardiology Division, St. Donato Polyclinic, San Donato Milanese, Milan, Italy
| | - Concetta Zito
- Cardiology Division, University Hospital Polyclinic G. Martino, University of Messina, Messina, Italy
| | | | - Eugenio Picano
- CNR, Institute of Clinical Physiology, Biomedicine Department, Pisa, Italy
| | - Scipione Carerj
- Cardiology Division, University Hospital Polyclinic G. Martino, University of Messina, Messina, Italy
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5
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Giga V, Boskovic N, Djordjevic-Dikic A, Beleslin B, Nedeljkovic I, Stankovic G, Tesic M, Jovanovic I, Paunovic I, Aleksandric S. Heart Rate Recovery as a Predictor of Long-Term Adverse Events after Negative Exercise Testing in Patients with Chest Pain and Pre-Test Probability of Coronary Artery Disease from 15% to 65. Diagnostics (Basel) 2023; 13:2229. [PMID: 37443623 DOI: 10.3390/diagnostics13132229] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 05/17/2023] [Revised: 06/15/2023] [Accepted: 06/27/2023] [Indexed: 07/15/2023] Open
Abstract
BACKGROUND The prognosis of patients with chest pain after a negative exercise test is good, but some adverse events occur in this low-risk group. The aim of our study was to identify predictors of long-term adverse events after a negative exercise test in patients with chest pain and a lower intermediate (15-65%) pre-test probability of coronary artery disease (CAD) and to assess the prognostic value of exercise electrocardiography and exercise stress echocardiography in this group of patients. METHODS We identified from our stress test laboratory database 862 patients with chest pain without previously known CAD and with a pre-test probability of CAD ranging from 15 to 65% (mean 41 ± 14%) who underwent exercise testing. Patients were followed for the occurrence of death, non-fatal myocardial infarction (MI) and clinically guided revascularization. RESULTS During the median follow-up of 94 months, 87 patients (10.1%) had an adverse event (AE). A total of 30 patients died (3.5%), 23 patients suffered non-fatal MI (2.7%) and 34 patients (3.9%) had clinically guided revascularization (20 patients percutaneous and 14 patients surgical revascularizations). Male gender, age, the presence of diabetes and a slow heart rate recovery (HRR) in the first minute after exercise were independently related to the occurrence of AEs. Adverse events occurred in 10.3% of patients who were tested by exercise stress echocardiography and in 10.0% of those who underwent stress electrocardiography (p = 0.888). CONCLUSION The risk of AEs after negative exercise testing in patients with a pre-test probability of CAD of 15-65% is low. Male patients with a history of diabetes and slow HRR in the first minute after exercise have an increased risk of an adverse outcome.
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Affiliation(s)
- Vojislav Giga
- Cardiology Clinic, University Clinical Center of Serbia, 11000 Belgrade, Serbia
- School of Medicine, University of Belgrade, 11000 Belgrade, Serbia
| | - Nikola Boskovic
- Cardiology Clinic, University Clinical Center of Serbia, 11000 Belgrade, Serbia
| | - Ana Djordjevic-Dikic
- Cardiology Clinic, University Clinical Center of Serbia, 11000 Belgrade, Serbia
- School of Medicine, University of Belgrade, 11000 Belgrade, Serbia
| | - Branko Beleslin
- Cardiology Clinic, University Clinical Center of Serbia, 11000 Belgrade, Serbia
- School of Medicine, University of Belgrade, 11000 Belgrade, Serbia
| | - Ivana Nedeljkovic
- Cardiology Clinic, University Clinical Center of Serbia, 11000 Belgrade, Serbia
- School of Medicine, University of Belgrade, 11000 Belgrade, Serbia
| | - Goran Stankovic
- Cardiology Clinic, University Clinical Center of Serbia, 11000 Belgrade, Serbia
- School of Medicine, University of Belgrade, 11000 Belgrade, Serbia
| | - Milorad Tesic
- Cardiology Clinic, University Clinical Center of Serbia, 11000 Belgrade, Serbia
| | - Ivana Jovanovic
- Cardiology Clinic, University Clinical Center of Serbia, 11000 Belgrade, Serbia
| | - Ivana Paunovic
- Cardiology Clinic, University Clinical Center of Serbia, 11000 Belgrade, Serbia
| | - Srdjan Aleksandric
- Cardiology Clinic, University Clinical Center of Serbia, 11000 Belgrade, Serbia
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6
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Nabiałek-Trojanowska I, Jankowska H, Sławiński G, Dąbrowska-Kugacka A, Lewicka E. Echocardiographic Findings in Asymptomatic Mediastinal Lymphoma Survivors Years after Treatment Termination. J Clin Med 2023; 12:jcm12103427. [PMID: 37240533 DOI: 10.3390/jcm12103427] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 03/23/2023] [Revised: 05/04/2023] [Accepted: 05/10/2023] [Indexed: 05/28/2023] Open
Abstract
Patients treated due to mediastinal lymphomas are at risk of cardiovascular complications, as they receive chemotherapy, usually containing anthracyclines, often combined with thoracic radiotherapy. The aim of this prospective study was to assess early asymptomatic cardiac dysfunction using resting and dobutamine stress echocardiography (DSE) at least 3 years after the end of mediastinal lymphoma treatment. Two groups of patients were compared: those treated with chemoradiotherapy and those exclusively treated with chemotherapy. Left ventricular contractile reserve (LVCR) during DSE was assessed using changes in LV ejection fraction (LVEF), LV global longitudinal strain (LV GLS), and a novel parameter-Force, which is the ratio of the systolic blood pressure to the LV end-systolic volume. The study included 60 patients examined at a median of 89 months after the end of treatment. Resting echocardiography showed normal LVEF of 58.9 ± 9.6%, borderline LV GLS of -17.7 ± 3%, decreased mean stroke volume (SV) of 51.4 ± 17 mL, and indexed SV of 27.3 ± 8 mL/m2, and the right ventricular free wall longitudinal strain (LS) was impaired in some patients but not in all. There were no significant differences between the groups, with the exception of arterial hypertension, which was more common in the chemotherapy group (32% vs. 62.5%, p = 0.04). In resting echocardiography, only LV posterior wall LS differed significantly and was impaired in patients treated with chemotherapy (-19.1 ± 3.1% vs. -16.5 ± 5.1%, p = 0.04). DSE, performed in 21 patients after a median of 166 months from the end of cancer treatment, detected new contractility disorders in 1 patient (4.8%) and decreased LVCR in the majority of patients when determined using changes in LVEF or LV GLS, and in all patients when assessed with changes in Force. Conclusions: Most asymptomatic mediastinal lymphoma survivors showed preserved ventricular function on resting echocardiography. However, all of them showed impaired LV contractile reserve on DSE, as assessed with a simple parameter-Force. This may indicate subtle LV dysfunction and confirms the need for long-term monitoring of patients with potentially cardiotoxic cancer treatment.
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Affiliation(s)
- Izabela Nabiałek-Trojanowska
- First Department of Cardiology, Faculty of Medicine, Medical University of Gdańsk, 80-210 Gdańsk, Poland
- Department of Cardiology and Electrotherapy, Faculty of Medicine, Medical University of Gdańsk, 80-210 Gdańsk, Poland
| | - Hanna Jankowska
- Division of Cardiac Diagnostics, Medical University of Gdańsk, 80-210 Gdańsk, Poland
| | - Grzegorz Sławiński
- Department of Cardiology and Electrotherapy, Faculty of Medicine, Medical University of Gdańsk, 80-210 Gdańsk, Poland
| | - Alicja Dąbrowska-Kugacka
- Department of Cardiology and Electrotherapy, Faculty of Medicine, Medical University of Gdańsk, 80-210 Gdańsk, Poland
| | - Ewa Lewicka
- Department of Cardiology and Electrotherapy, Faculty of Medicine, Medical University of Gdańsk, 80-210 Gdańsk, Poland
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7
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Demi L, Wolfram F, Klersy C, De Silvestri A, Ferretti VV, Muller M, Miller D, Feletti F, Wełnicki M, Buda N, Skoczylas A, Pomiecko A, Damjanovic D, Olszewski R, Kirkpatrick AW, Breitkreutz R, Mathis G, Soldati G, Smargiassi A, Inchingolo R, Perrone T. New International Guidelines and Consensus on the Use of Lung Ultrasound. JOURNAL OF ULTRASOUND IN MEDICINE : OFFICIAL JOURNAL OF THE AMERICAN INSTITUTE OF ULTRASOUND IN MEDICINE 2023; 42:309-344. [PMID: 35993596 PMCID: PMC10086956 DOI: 10.1002/jum.16088] [Citation(s) in RCA: 129] [Impact Index Per Article: 64.5] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Subscribe] [Scholar Register] [Received: 03/07/2022] [Revised: 06/28/2022] [Accepted: 07/31/2022] [Indexed: 05/02/2023]
Abstract
Following the innovations and new discoveries of the last 10 years in the field of lung ultrasound (LUS), a multidisciplinary panel of international LUS experts from six countries and from different fields (clinical and technical) reviewed and updated the original international consensus for point-of-care LUS, dated 2012. As a result, a total of 20 statements have been produced. Each statement is complemented by guidelines and future developments proposals. The statements are furthermore classified based on their nature as technical (5), clinical (11), educational (3), and safety (1) statements.
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Affiliation(s)
- Libertario Demi
- Department of Information Engineering and Computer ScienceUniversity of TrentoTrentoItaly
| | - Frank Wolfram
- Department of Thoracic and Vascular SurgerySRH Wald‐Klinikum GeraGeraGermany
| | - Catherine Klersy
- Unit of Clinical Epidemiology and BiostatisticsFondazione IRCCS Policlinico S. MatteoPaviaItaly
| | - Annalisa De Silvestri
- Unit of Clinical Epidemiology and BiostatisticsFondazione IRCCS Policlinico S. MatteoPaviaItaly
| | | | - Marie Muller
- Department of Mechanical and Aerospace EngineeringNorth Carolina State UniversityRaleighNorth CarolinaUSA
| | - Douglas Miller
- Department of RadiologyMichigan MedicineAnn ArborMichiganUSA
| | - Francesco Feletti
- Department of Diagnostic ImagingUnit of Radiology of the Hospital of Ravenna, Ausl RomagnaRavennaItaly
- Department of Translational Medicine and for RomagnaUniversità Degli Studi di FerraraFerraraItaly
| | - Marcin Wełnicki
- 3rd Department of Internal Medicine and CardiologyMedical University of WarsawWarsawPoland
| | - Natalia Buda
- Department of Internal Medicine, Connective Tissue Disease and GeriatricsMedical University of GdanskGdanskPoland
| | - Agnieszka Skoczylas
- Geriatrics DepartmentNational Institute of Geriatrics, Rheumatology and RehabilitationWarsawPoland
| | - Andrzej Pomiecko
- Clinic of Pediatrics, Hematology and OncologyUniversity Clinical CenterGdańskPoland
| | - Domagoj Damjanovic
- Heart Center Freiburg University, Department of Cardiovascular Surgery, Faculty of MedicineUniversity of FreiburgFreiburgGermany
| | - Robert Olszewski
- Department of Gerontology, Public Health and DidacticsNational Institute of Geriatrics, Rheumatology and RehabilitationWarsawPoland
| | - Andrew W. Kirkpatrick
- Departments of Critical Care Medicine and SurgeryUniversity of Calgary and the TeleMentored Ultrasound Supported Medical Interventions Research GroupCalgaryCanada
| | - Raoul Breitkreutz
- FOM Hochschule für Oekonomie & Management gGmbHDepartment of Health and SocialEssenGermany
| | - Gebhart Mathis
- Emergency UltrasoundAustrian Society for Ultrasound in Medicine and BiologyViennaAustria
| | - Gino Soldati
- Diagnostic and Interventional Ultrasound UnitValledel Serchio General HospitalLuccaItaly
| | - Andrea Smargiassi
- Pulmonary Medicine Unit, Department of Medical and Surgical SciencesFondazione Policlinico Universitario A. Gemelli IRCCSRomeItaly
- Department of Internal Medicine, IRCCS San Matteo Hospital FoundationUniversity of PaviaPaviaItaly
| | - Riccardo Inchingolo
- Pulmonary Medicine Unit, Department of Medical and Surgical SciencesFondazione Policlinico Universitario A. Gemelli IRCCSRomeItaly
- Department of Internal Medicine, IRCCS San Matteo Hospital FoundationUniversity of PaviaPaviaItaly
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8
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Pálinkás ED, Re F, Peteiro J, Tesic M, Pálinkás A, Torres MAR, Dikic AD, Beleslin B, Van De Heyning CM, D’Alfonso MG, Mori F, Ciampi Q, de Castro Silva Pretto JL, Simova I, Nagy V, Boda K, Sepp R, Olivotto I, Pellikka PA, Picano E. Pulmonary congestion during Exercise stress Echocardiography in Hypertrophic Cardiomyopathy. Int J Cardiovasc Imaging 2022; 38:2593-2604. [DOI: 10.1007/s10554-022-02620-0] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 03/16/2022] [Accepted: 04/09/2022] [Indexed: 11/30/2022]
Abstract
Abstract
Background
B-lines detected by lung ultrasound (LUS) during exercise stress echocardiography (ESE), indicating pulmonary congestion, have not been systematically evaluated in patients with hypertrophic cardiomyopathy (HCM).
Aim
To assess the clinical, anatomical and functional correlates of pulmonary congestion elicited by exercise in HCM.
Methods
We enrolled 128 HCM patients (age 52 ± 15 years, 72 males) consecutively referred for ESE (treadmill in 46, bicycle in 82 patients) in 10 quality-controlled centers from 7 countries (Belgium, Brazil, Bulgaria, Hungary, Italy, Serbia, Spain). ESE assessment at rest and peak stress included: mitral regurgitation (MR, score from 0 to 3); E/e’; systolic pulmonary arterial pressure (SPAP) and end-diastolic volume (EDV). Change from rest to stress was calculated for each variable. Reduced preload reserve was defined by a decrease in EDV during exercise. B-lines at rest and at peak exercise were assessed by lung ultrasound with the 4-site simplified scan. B-lines positivity was considered if the sum of detected B-lines was ≥ 2.
Results
LUS was feasible in all subjects. B-lines were present in 13 patients at rest and in 38 during stress (10 vs 30%, p < 0.0001). When compared to patients without stress B-lines (n = 90), patients with B-lines (n = 38) had higher resting E/e’ (14 ± 6 vs. 11 ± 4, p = 0.016) and SPAP (33 ± 10 vs. 27 ± 7 mm Hg p = 0.002). At peak exercise, patients with B-lines had higher peak E/e’ (17 ± 6 vs. 13 ± 5 p = 0.003) and stress SPAP (55 ± 18 vs. 40 ± 12 mm Hg p < 0.0001), reduced preload reserve (68 vs. 30%, p = 0.001) and an increase in MR (42 vs. 17%, p = 0.013) compared to patients without congestion. Among baseline parameters, the number of B-lines and SPAP were the only independent predictors of exercise pulmonary congestion.
Conclusions
Two-thirds of HCM patients who develop pulmonary congestion on exercise had no evidence of B-lines at rest. Diastolic impairment and mitral regurgitation were key determinants of pulmonary congestion during ESE. These findings underscore the importance of evaluating hemodynamic stability by physiological stress in HCM, particularly in the presence of unexplained symptoms and functional limitation.
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9
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Di Lisi D, Ciampi Q, Madaudo C, Manno G, Macaione F, Novo S, Novo G. Contractile Reserve in Heart Failure with Preserved Ejection Fraction. J Cardiovasc Dev Dis 2022; 9:jcdd9080248. [PMID: 36005412 PMCID: PMC9409661 DOI: 10.3390/jcdd9080248] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Track Full Text] [Download PDF] [Journal Information] [Subscribe] [Scholar Register] [Received: 06/16/2022] [Revised: 07/19/2022] [Accepted: 07/27/2022] [Indexed: 11/16/2022] Open
Abstract
Background: Diastolic stress echocardiography (SE) is useful for confirming the diagnosis of heart failure with preserved left ventricular ejection fraction (HFpEF) when it is uncertain. The aim of this study was to assess the value of new echocardiographic parameters during diastolic SE in patients with dyspnea and suspected HFpEF. Methods: Sixty-two patients with exertional dyspnea and inconclusive rest echocardiography for a diagnosis of HFpEF were enrolled. Exercise SE was performed in all patients. Contractile reserve (LVCR) was assessed by measuring: 1. changes in the left ventricular ejection fraction (LVEF) between rest and peak stress; 2. stress-to-rest ratio of force (force was defined as the ratio between systolic arterial pressure and left ventricular end-systolic volume); and 3. mechanical reserve, defined as the change in systolic strain (GLS) between rest and peak stress. Results: Diagnosis of HFpEF was performed by SE in 26 patients. Comparing patients with a diagnosis of HFpEF (group A) to patients with other causes of dyspnea (group B), we found a significant increase in the E/e’ ratio in group A at peak stress. LV GLS was significantly reduced in group A compared to group B at rest and stress (p value 0.01 at rest; p value 0.04 at stress). At peak stress, GLS did not significantly increase in group A, while it increased in group B (p value 0.04). LVEF increased significantly in both groups. Conclusion: Patients with HFpEF have impaired LVCR when assessed using GLS. Thus, the assessment of mechanical reserve could give additional diagnostic information during stress tests in patients with HFpEF.
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Affiliation(s)
- Daniela Di Lisi
- Department of Health Promotion Sciences, Maternal-Infant Care, Internal Medicine and Specialities of Excellence “G. D’Alessandro”, University of Palermo, Palermo, via del Vespro 129, 90127 Palermo, Italy
- Cardiology Unit, University Hospital “P. Giaccone”, Palermo, via del Vespro 129, 90127 Palermo, Italy
- Correspondence: or ; Tel.: +39-38-9198-7348
| | - Quirino Ciampi
- Department of Cardiology, Ospedale Fatebenefratelli, 80123 Benevento, Italy
| | - Cristina Madaudo
- Department of Health Promotion Sciences, Maternal-Infant Care, Internal Medicine and Specialities of Excellence “G. D’Alessandro”, University of Palermo, Palermo, via del Vespro 129, 90127 Palermo, Italy
- Cardiology Unit, University Hospital “P. Giaccone”, Palermo, via del Vespro 129, 90127 Palermo, Italy
| | - Girolamo Manno
- Department of Health Promotion Sciences, Maternal-Infant Care, Internal Medicine and Specialities of Excellence “G. D’Alessandro”, University of Palermo, Palermo, via del Vespro 129, 90127 Palermo, Italy
- Cardiology Unit, University Hospital “P. Giaccone”, Palermo, via del Vespro 129, 90127 Palermo, Italy
| | - Francesca Macaione
- Department of Health Promotion Sciences, Maternal-Infant Care, Internal Medicine and Specialities of Excellence “G. D’Alessandro”, University of Palermo, Palermo, via del Vespro 129, 90127 Palermo, Italy
- Cardiology Unit, University Hospital “P. Giaccone”, Palermo, via del Vespro 129, 90127 Palermo, Italy
| | - Salvatore Novo
- Department of Health Promotion Sciences, Maternal-Infant Care, Internal Medicine and Specialities of Excellence “G. D’Alessandro”, University of Palermo, Palermo, via del Vespro 129, 90127 Palermo, Italy
- Cardiology Unit, University Hospital “P. Giaccone”, Palermo, via del Vespro 129, 90127 Palermo, Italy
| | - Giuseppina Novo
- Department of Health Promotion Sciences, Maternal-Infant Care, Internal Medicine and Specialities of Excellence “G. D’Alessandro”, University of Palermo, Palermo, via del Vespro 129, 90127 Palermo, Italy
- Cardiology Unit, University Hospital “P. Giaccone”, Palermo, via del Vespro 129, 90127 Palermo, Italy
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10
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Merli E, Ciampi Q, Scali MC, Zagatina A, Merlo PM, Arbucci R, Daros CB, de Castro E Silva Pretto JL, Amor M, Salamè MF, Mosto H, Morrone D, D'Andrea A, Reisenhofer B, Rodriguez-Zanella H, Wierzbowska-Drabik K, Kasprzak JD, Agoston G, Varga A, Lowenstein J, Dodi C, Cortigiani L, Simova I, Samardjieva M, Citro R, Celutkiene J, Re F, Monte I, Gligorova S, Antonini-Canterin F, Pepi M, Carpeggiani C, Pellikka PA, Picano E. Pulmonary Congestion During Exercise Stress Echocardiography in Ischemic and Heart Failure Patients. Circ Cardiovasc Imaging 2022; 15:e013558. [PMID: 35580160 DOI: 10.1161/circimaging.121.013558] [Citation(s) in RCA: 5] [Impact Index Per Article: 1.7] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Indexed: 11/16/2022]
Abstract
BACKGROUND Lung ultrasound detects pulmonary congestion as B-lines at rest, and more frequently, during exercise stress echocardiography (ESE). METHODS We performed ESE plus lung ultrasound (4-site simplified scan) in 4392 subjects referred for semi-supine bike ESE in 24 certified centers in 9 countries. B-line score ranged from 0 (normal) to 40 (severely abnormal). Five different populations were evaluated: control subjects (n=103); chronic coronary syndromes (n=3701); heart failure with reduced ejection fraction (n=395); heart failure with preserved ejection fraction (n=70); ischemic mitral regurgitation ≥ moderate at rest (n=123). In a subset of 2478 patients, follow-up information was available. RESULTS During ESE, B-lines increased in all study groups except controls. Age, hypertension, abnormal ejection fraction, peak wall motion score index, and abnormal heart rate reserve were associated with B-lines in multivariable regression analysis. Stress B lines (hazard ratio, 2.179 [95% CI, 1.015-4.680]; P=0.046) and ejection fraction <50% (hazard ratio, 2.942 [95% CI, 1.268-6.822]; P=0.012) were independent predictors of all-cause death (n=29 after a median follow-up of 29 months). CONCLUSIONS B-lines identify the pulmonary congestion phenotype at rest, and more frequently, during ESE in ischemic and heart failure patients. Stress B-lines may help to refine risk stratification in these patients. REGISTRATION URL: https://www. CLINICALTRIALS gov; Unique identifier: NCT03049995.
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Affiliation(s)
- Elisa Merli
- Department of Cardiology, Ospedale per gli Infermi, Faenza, Italy (E.M.)
| | - Quirino Ciampi
- Cardiology Division, Fatebenefratelli Hospital, Benevento, Italy (Q.C.)
| | | | - Angela Zagatina
- Cardiology Department, Saint Petersburg State University Hospital, Saint Petersburg, Russian Federation (A.Z.)
| | - Pablo Martin Merlo
- Cardiodiagnosticos, Investigaciones Medicas, Buenos Aires, Argentina (P.M.M., R.A., J.L.)
| | - Rosina Arbucci
- Cardiodiagnosticos, Investigaciones Medicas, Buenos Aires, Argentina (P.M.M., R.A., J.L.)
| | | | | | - Miguel Amor
- Cardiology Department, Ramos Mejia Hospital, Buenos Aires, Argentina (M.A., M.F.S., H.M.)
| | - Michael F Salamè
- Cardiology Department, Ramos Mejia Hospital, Buenos Aires, Argentina (M.A., M.F.S., H.M.)
| | - Hugo Mosto
- Cardiology Department, Ramos Mejia Hospital, Buenos Aires, Argentina (M.A., M.F.S., H.M.)
| | - Doralisa Morrone
- Cardiology Department, Cisanello University Hospital, Pisa, Italy (D.M.)
| | - Antonello D'Andrea
- Cardiology, Monaldi Hospital, Second University of Naples, and Nocera Inferiore, Italy (A.D.)
| | | | | | | | - Jaroslaw D Kasprzak
- Chair of Cardiology, Bieganski Hospital, Medical University, Lodz, Poland (K.W.-D., J.D.K.)
| | - Gergely Agoston
- Institute of Family Medicine, University of Szeged, Hungary (G.A., A.V.)
| | - Albert Varga
- Institute of Family Medicine, University of Szeged, Hungary (G.A., A.V.)
| | - Jorge Lowenstein
- Cardiodiagnosticos, Investigaciones Medicas, Buenos Aires, Argentina (P.M.M., R.A., J.L.)
| | - Claudio Dodi
- Cardiology Department, Ospedale di Cremona, Italy (C.D.)
| | | | - Iana Simova
- Cardiology Department, Heart and Brain Center of Excellence, University Hospital, Pleven, Bulgaria (I.S., M.S.).,Medical University, Pleven, Bulgaria (I.S., M.S.)
| | - Martina Samardjieva
- Cardiology Department, Heart and Brain Center of Excellence, University Hospital, Pleven, Bulgaria (I.S., M.S.).,Medical University, Pleven, Bulgaria (I.S., M.S.)
| | - Rodolfo Citro
- Cardio-Thoracic-Vascular-Department, University Hospital "San Giovanni di Dio e Ruggi d'Aragona", Salerno, Italy (R.C.)
| | - Jelena Celutkiene
- Centre of Cardiology and Angiology, Clinic of Cardiac and Vascular Diseases, Institute of Clinical Medicine, Faculty of Medicine, Vilnius University, Lithuania (J.C.)
| | - Federica Re
- Ospedale San Camillo, Cardiology Division, Rome, Italy (F.R.)
| | - Ines Monte
- Cardio-Thorax-Vascular Department, Echocardiography Lab, "Policlinico Vittorio Emanuele", Catania University, Italy (I.M.)
| | | | - Francesco Antonini-Canterin
- Highly Specialized Rehabilitation Hospital Motta di Livenza, Cardiac Prevention and Rehabilitation Unit, Treviso, Italy (F.A.-C.)
| | - Mauro Pepi
- Centro Cardiologico Monzino, IRCCS, Milan, Italy (M.P.)
| | | | | | - Eugenio Picano
- Institute of Clinical Physiology, CNR, Pisa Italy (C.C., E.P.)
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11
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Cotrim CA, Café H, João I, Cotrim N, Guardado J, Cordeiro P, Cotrim H, Baquero L. Exercise stress echocardiography: Where are we now? World J Cardiol 2022; 14:64-82. [PMID: 35316975 PMCID: PMC8900523 DOI: 10.4330/wjc.v14.i2.64] [Citation(s) in RCA: 11] [Impact Index Per Article: 3.7] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 03/20/2021] [Revised: 07/04/2021] [Accepted: 01/29/2022] [Indexed: 02/06/2023] Open
Abstract
Exercise stress echocardiography (ESE) is a widely used diagnostic test in cardiology departments. ESE is mainly used to study patients with coronary artery disease; however, it has increasingly been used in other clinical scenarios including valve pathology, congenital heart disease, hypertrophic and dilated cardiomyopathies, athlete evaluations, diastolic function evaluation, and pulmonary circulation study. In our laboratories, we use an established methodology in which cardiac function is evaluated while exercising on a treadmill. After completing the exercise regimen, patients remain in a standing position or lie down on the left lateral decubitus, depending on the clinical questions to be answered for further evaluation. This method increases the quality and quantity of information obtained. Here, we present the various methods of exercise stress echocardiography and our experience in many clinical arenas in detail. We also present alternatives to ESE that may be used and their advantages and disadvantages. We review recent advances in ESE and future directions for this established method in the study of cardiac patients and underline the advantage of using a diagnostic tool that is radiation-free.
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Affiliation(s)
| | - Hugo Café
- Faculdade de Medicina, Algarve University, Faro 8005-139, Portugal
| | - Isabel João
- Department of Cardiology, Garcia de Orta Hospital, Almada 2805-267, Portugal
| | - Nuno Cotrim
- Department of Medicine, Garcia de Orta Hospital, Almada 2805-267, Portugal
| | - Jorge Guardado
- Cardiovascular Unit, UCARDIO, Centro Clinico, Riachos 2350-325, Portugal
| | - Pedro Cordeiro
- Department of Cardiology, Hospital Particular do Algarve, Faro 8005-226, Portugal
| | - Hortense Cotrim
- Faculdade de Medicina, Algarve University, Faro 8005-139, Portugal
| | - Luis Baquero
- Heart Center, Hospital da Cruz Vermelha Portuguesa, Lisboa 1549-008, Portugal
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12
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Wierzbowska-Drabik K, Kasprzak JD, Haberka M, Peteiro J, Re F, D'Alfonso MG, Mori F, Palinkas ED, Agoston G, Varga A, Djordjevic-Dikic A, Tesic M, Zagatina A, Rodriguez-Zanella H, Simova I, Merli E, Morrone D, D'Andrea A, Camarozano AC, Reisenhofer B, Prota C, Citro R, Celutkiene J, Boshchenko A, Ciampi Q, Picano E. Left atrial volume changes during exercise stress echocardiography in heart failure and hypertrophic cardiomyopathy: Exercise echocardiography and left atrial changes. Hellenic J Cardiol 2022; 67:9-18. [PMID: 35123008 DOI: 10.1016/j.hjc.2022.01.003] [Citation(s) in RCA: 3] [Impact Index Per Article: 1.0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/15/2021] [Revised: 01/25/2022] [Accepted: 01/26/2022] [Indexed: 11/20/2022] Open
Abstract
BACKGROUND We assessed feasibility and functional correlates of LAVI (left atrial volume index) changes during exercise stress echocardiography (ESE). METHODS ESE on bike or treadmill was performed in 363 patients with heart failure with preserved ejection fraction (HFpEF, n = 173), reduced ejection fraction (HFrEF, n = 59) or hypertrophic cardiomyopathy (HCM, n=131). LAVI stress-rest increase ≥ 6.8 ml/m2 was defined as dilation. RESULTS LAVI measurements were feasible in 100%. LAVI did not change in HFrEF being at rest 32 (25-45) vs. at stress 36 (24 - 54) ml/m2, P = NS and in HCM at rest 35 (26 - 48) vs. at stress 38 (28 - 48) ml/m2, P = NS whereas it decreased in HFpEF from 30 (24 -40) to 29 (21 - 37) ml/m2 at stress, P = 0.007. LA dilation occurred in 107 (30%) patients (27% with treadmill vs. 33% with bike ESE, P = NS): 26 with HFpEF (15%), 26 with HFrEF (44%) and 55 with HCM (42%) with P < 0.001 for HFrEF and HCM vs. HFpEF. Multivariate analysis revealed as the predictors for LAVI dilation E/e' > 14 at rest with OR 4.4, LVEF < 50% with OR 2.9, and LAVI at rest < 35 ml/m2 with OR 2.7. CONCLUSION LAVI assessment during ESE was highly feasible and dilation equally frequent with treadmill or bike. LA dilation was threefold more frequent in HCM and HFrEF and could be predicted by increased resting E/e' and impaired EF as well as smaller baseline LAVI.
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Affiliation(s)
| | | | - Maciej Haberka
- Department of Cardiology, SHS, Medical University of Silesia, Katowice, Poland
| | | | | | | | - Fabio Mori
- Doctoral School of Clinical Medicine, University of Szeged, Szeged, Hungary
| | - Eszter D Palinkas
- Careggi University Hospital, Florence, Italy; Doctoral School of Clinical Medicine, University of Szeged, Szeged, Hungary; Division of Noninvasive Cardiology, Department of Internal Medicine, Albert Szent-Gyorgyi Clinical Center, University of Szeged, Szeged, Hungary
| | - Gergely Agoston
- University of Szeged, Department of Family Medicine, Szeged, Hungary
| | - Albert Varga
- University of Szeged, Department of Family Medicine, Szeged, Hungary
| | - Ana Djordjevic-Dikic
- Clinic for Cardiology, University Clinical Center of Serbia, Belgrade, Serbia; School of Medicine, University of Belgrade, Belgrade, Serbia
| | - Milorad Tesic
- Clinic for Cardiology, University Clinical Center of Serbia, Belgrade, Serbia; School of Medicine, University of Belgrade, Belgrade, Serbia
| | - Angela Zagatina
- Cardiology Department, Saint Petersburg State University Hospital, Saint Petersburg, Russian Federation
| | | | - Iana Simova
- Heart and Brain Center of Excellence, University Hospital, Pleven, Bulgaria
| | | | | | | | - Ana C Camarozano
- Hospital de Clinicas UFPR, Medicine Department, Federal University of Paranà, Curitiba, Brazil
| | | | - Costantina Prota
- University Hospital "San Giovanni di Dio e Ruggi D'Aragona", Salerno, Italy
| | - Rodolfo Citro
- University Hospital "San Giovanni di Dio e Ruggi D'Aragona", Salerno, Italy
| | - Jelena Celutkiene
- Centre of Cardiac and Vascular Diseases, Institute of Clinical Medicine, Faculty of Medicine, Vilnius University Hospital, Vilnius, Lithuania; State Research Institute Centre for Innovative Medicine, Vilnius, Lithuania
| | - Alla Boshchenko
- Cardiology Research Institute, Tomsk National Research Medical Centre of the Russian Academy of Sciences, Tomsk, Russian Federation
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13
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Quintero-Martinez JA, Cordova-Madera SN, Villarraga HR. Radiation-Induced Heart Disease. J Clin Med 2021; 11:146. [PMID: 35011887 PMCID: PMC8745750 DOI: 10.3390/jcm11010146] [Citation(s) in RCA: 21] [Impact Index Per Article: 5.3] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 12/03/2021] [Revised: 12/22/2021] [Accepted: 12/25/2021] [Indexed: 12/20/2022] Open
Abstract
Cancer incidence and survivorship have had a rising tendency over the last two decades due to better treatment modalities. One of these is radiation therapy (RT), which is used in 20-55% of cancer patients, and its basic principle consists of inhibiting proliferation or inducing apoptosis of cancer cells. Classically, photon beam RT has been the mainstay therapy for these patients, but, in the last decade, proton beam has been introduced as a new option. This newer method focuses more on the tumor and affects less of the surrounding normal tissue, i.e., the heart. Radiation to the heart is a common complication of RT, especially in patients with lymphoma, breast, lung, and esophageal cancer. The pathophysiology is due to changes in the microvascular and macrovascular milieu that can promote accelerated atherosclerosis and/or induce fibrosis of the myocardium, pericardium, and valves. These complications occur days, weeks, or years after RT and the risk factors associated are high radiation doses (>30 Gy), concomitant chemotherapy (primarily anthracyclines), age, history of heart disease, and the presence of cardiovascular risk factors. The understanding of these mechanisms and risk factors by physicians can lead to a tailored assessment and monitorization of these patients with the objective of early detection or prevention of radiation-induced heart disease. Echocardiography is a noninvasive method which provides a comprehensive evaluation of the pericardium, valves, myocardium, and coronaries, making it the first imaging tool in most cases; however, other modalities, such as computed tomography, nuclear medicine, or cardiac magnetic resonance, can provide additional value.
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Affiliation(s)
| | | | - Hector R. Villarraga
- Department of Cardiovascular Medicine, Mayo Clinic College of Medicine and Science, Rochester, MN 55905, USA; (J.A.Q.-M.); (S.N.C.-M.)
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14
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Aguirre N, Cymberknop LJ, Farro I, Americo C, Martinez F, Grall E, Lluberas N, Parma G, Aramburu J, Armentano RL. Arterial-Ventricular Coupling Impairment is Evidenced in Both Normal and Ischemic Subjects by Applying Cluster Analysis. ANNUAL INTERNATIONAL CONFERENCE OF THE IEEE ENGINEERING IN MEDICINE AND BIOLOGY SOCIETY. IEEE ENGINEERING IN MEDICINE AND BIOLOGY SOCIETY. ANNUAL INTERNATIONAL CONFERENCE 2021; 2021:5590-5593. [PMID: 34892391 DOI: 10.1109/embc46164.2021.9629812] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Subscribe] [Scholar Register] [Indexed: 06/14/2023]
Abstract
INTRODUCTION Left ventricular (LV) interaction with the arterial system (arterial-ventricular coupling, AVC) is a central determinant of cardiovascular performance and cardiac energetics. Stress Echocardiography (SE) constitutes a valuable clinical tool in both diagnosis and risk stratification of patients with suspected and established coronary artery disease. Cluster Analysis (CA), an unsupervised Machine Learning technique, defines an exploratory statistical method which can be used to uncover natural groups within data. OBJECTIVE To evaluate the capacity of CA to identify uncoupled groups with ischemic condition based on SE baseline information. MATERIAL AND METHODS CA was applied to SE data acquired at baseline and peak exercise (PE) conditions. Obtained clusters were evaluated in terms of coupling conditions and LV wall motility alterations. RESULTS Inter cluster significant AVC differences were obtained in terms of baseline data and changes in wall motility, confirmed by CA applied to PE data. CONCLUSION AVC impairment was evidenced in both normal and ischemic subjects by applying CA.
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15
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Schroder J, Prescott E. Doppler Echocardiography Assessment of Coronary Microvascular Function in Patients With Angina and No Obstructive Coronary Artery Disease. Front Cardiovasc Med 2021; 8:723542. [PMID: 34778394 PMCID: PMC8585781 DOI: 10.3389/fcvm.2021.723542] [Citation(s) in RCA: 14] [Impact Index Per Article: 3.5] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 06/10/2021] [Accepted: 09/22/2021] [Indexed: 01/18/2023] Open
Abstract
Echocardiographic evaluation is an essential part of the diagnostic work-up in patients with known or suspected cardiovascular disease. Transthoracic Doppler echocardiography (TTDE) enables straightforward and reliable visualization of flow in the left anterior descending artery. In the absence of obstructive coronary artery disease, low TTDE-derived coronary flow velocity reserve (CFVR) is considered a marker of coronary microvascular dysfunction (CMD). TTDE CFVR is free from ionizing radiation and widely available, utilizing high-frequency transducers, pharmacologic vasodilator stress, and pulsed-wave Doppler quantification of diastolic peak flow velocities. European Society of Cardiology guidelines recommend TTDE CFVR evaluation only following preceding anatomic invasive or non-invasive coronary imaging excluding obstructive CAD. Accordingly, clinical use of TTDE CFVR is limited and CMD frequently goes undiagnosed. An evolving body of evidence underlines that low CFVR is an important and robust predictor of adverse prognosis and continuing symptoms in angina patients both with and without obstructive CAD. The majority of angina patients have no obstructive CAD, particularly among women. This has led to the suggestion that there may be a gender-specific female atherosclerotic phenotype with less epicardial obstruction, and a low CFVR signifying CMD instead. Nevertheless, available evidence indicates low CFVR is an equally important prognostic marker in both men and women. In this review, TTDE CFVR was evaluated regarding indication, practical and technical aspects, and interpretation of results. Association with symptoms and prognosis, comparison with alternative invasive and non-invasive imaging modalities, and possible interventions in angina patients with low CFVR were discussed, and key research questions were proposed.
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Affiliation(s)
- Jakob Schroder
- Department of Cardiology, Bispebjerg Frederiksberg Hospital, University of Copenhagen, Copenhagen, Denmark
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16
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Ciampi Q, Zagatina A, Cortigiani L, Wierzbowska-Drabik K, Kasprzak JD, Haberka M, Djordjevic-Dikic A, Beleslin B, Boshchenko A, Ryabova T, Gaibazzi N, Rigo F, Dodi C, Simova I, Samardjieva M, Barbieri A, Morrone D, Lorenzoni V, Prota C, Villari B, Antonini-Canterin F, Pepi M, Carpeggiani C, Pellikka PA, Picano E. Prognostic value of stress echocardiography assessed by the ABCDE protocol. Eur Heart J 2021; 42:3869-3878. [PMID: 34449837 PMCID: PMC8486488 DOI: 10.1093/eurheartj/ehab493] [Citation(s) in RCA: 45] [Impact Index Per Article: 11.3] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 03/16/2021] [Revised: 05/04/2021] [Accepted: 07/19/2021] [Indexed: 12/20/2022] Open
Abstract
AIM The aim of this study was to assess the prognostic value of ABCDE-SE in a prospective, large scale, multicentre, international, effectiveness study. Stress echocardiography (SE) was recently upgraded to the ABCDE protocol: step A, regional wall motion abnormalities; step B, B lines; step C, left ventricular contractile reserve; step D, Doppler-based coronary flow velocity reserve in left anterior descending coronary artery; and step E, electrocardiogram-based heart rate reserve. METHODS AND RESULTS From July 2016 to November 2020, we enrolled 3574 all-comers (age 65 ± 11 years, 2070 males, 58%; ejection fraction 60 ± 10%) with known or suspected chronic coronary syndromes referred from 13 certified laboratories. All patients underwent clinically indicated ABCDE-SE. The employed stress modality was exercise (n = 952, with semi-supine bike, n = 887, or treadmill, n = 65 with adenosine for step D) or pharmacological stress (n = 2622, with vasodilator, n = 2151; or dobutamine, n = 471). SE response ranged from score 0 (all steps normal) to score 5 (all steps abnormal). All-cause death was the only endpoint. Rate of abnormal results was 16% for A, 30% for B, 36% for C, 28% for D, and 37% for E steps. During a median follow-up of 21 months (interquartile range: 13-36), 73 deaths occurred. Global X2 was 49.5 considering clinical variables, 50.7 after step A only (P = NS (not significant)) and 80.6 after B-E steps (P < 0.001 vs. step A). Annual mortality rate ranged from 0.4% person-year for score 0 up to 2.7% person-year for score 5. CONCLUSION ABCDE-SE allows an effective prediction of survival in patients with chronic coronary syndromes.
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Affiliation(s)
- Quirino Ciampi
- Cardiology Division, Fatebenefratelli Hospital, Benevento, Italy
| | - Angela Zagatina
- Cardiology Department, Saint Petersburg State University Hospital, Russian Federation
| | | | | | | | - Maciej Haberka
- Department of Cardiology, SHS, Medical University of Silesia, Katowice, Poland
| | - Ana Djordjevic-Dikic
- Cardiology Clinic, Clinical Center of Serbia, Medical School, University of Belgrade, Belgrade, Serbia
| | - Branko Beleslin
- Cardiology Clinic, Clinical Center of Serbia, Medical School, University of Belgrade, Belgrade, Serbia
| | - Alla Boshchenko
- Cardiology Research Institute, Tomsk National Research Medical Centre of the Russian Academy of Sciences, Tomsk, Russian Federation
| | - Tamara Ryabova
- Cardiology Research Institute, Tomsk National Research Medical Centre of the Russian Academy of Sciences, Tomsk, Russian Federation
| | - Nicola Gaibazzi
- Cardiology Department, Parma University Hospital, Parma, Italy
| | - Fausto Rigo
- Cardiology Department, Ospedale di Dolo-Venice, Venice, Italy
| | - Claudio Dodi
- Cardiology Department, Ospedale di Cremona, Cremona, Italy
| | - Iana Simova
- Cardiology Department, Heart and Brain Center of Excellence, University Hospital, Pleven, Sofia, Bulgaria
| | - Martina Samardjieva
- Cardiology Department, Heart and Brain Center of Excellence, University Hospital, Pleven, Sofia, Bulgaria
| | | | | | | | | | - Bruno Villari
- Cardiology Division, Fatebenefratelli Hospital, Benevento, Italy
| | - Francesco Antonini-Canterin
- Highly Specialized Rehabilitation Hospital Motta di Livenza, Cardiac Prevention and Rehabilitation Unit, Treviso, Italy.,Italian Society of Echocardiography and Cardiovascular Imaging, Milano, Italy
| | - Mauro Pepi
- Italian Society of Echocardiography and Cardiovascular Imaging, Milano, Italy.,Cardiology Division, Fondazione Cardiologica Monzino, Milano, Italy
| | - Clara Carpeggiani
- Biomedicine Department, CNR, Institute of Clinical Physiology, Via Moruzzi 1, Building C- Room 130, 56124 Pisa, Italy
| | | | - Eugenio Picano
- Biomedicine Department, CNR, Institute of Clinical Physiology, Via Moruzzi 1, Building C- Room 130, 56124 Pisa, Italy
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17
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Picano E, Ciampi Q, Cortigiani L, Arruda-Olson AM, Borguezan-Daros C, de Castro e Silva Pretto JL, Cocchia R, Bossone E, Merli E, Kane GC, Varga A, Agoston G, Scali MC, Morrone D, Simova I, Samardjieva M, Boshchenko A, Ryabova T, Vrublevsky A, Palinkas A, Palinkas ED, Sepp R, Torres MAR, Villarraga HR, Preradović TK, Citro R, Amor M, Mosto H, Salamè M, Leeson P, Mangia C, Gaibazzi N, Tuttolomondo D, Prota C, Peteiro J, Van De Heyning CM, D’Andrea A, Rigo F, Nikolic A, Ostojic M, Lowenstein J, Arbucci R, Haber DML, Merlo PM, Wierzbowska-Drabik K, Kasprzak JD, Haberka M, Camarozano AC, Ratanasit N, Mori F, D’Alfonso MG, Tassetti L, Milazzo A, Olivotto I, Marchi A, Rodriguez-Zanella H, Zagatina A, Padang R, Dekleva M, Djordievic-Dikic A, Boskovic N, Tesic M, Giga V, Beleslin B, Di Salvo G, Lorenzoni V, Cameli M, Mandoli GE, Bombardini T, Caso P, Celutkiene J, Barbieri A, Benfari G, Bartolacelli Y, Malagoli A, Bursi F, Mantovani F, Villari B, Russo A, De Nes M, Carpeggiani C, Monte I, Re F, Cotrim C, Bilardo G, Saad AK, Karuzas A, Matuliauskas D, Colonna P, Antonini-Canterin F, Pepi M, Pellikka PA. Stress Echo 2030: The Novel ABCDE-(FGLPR) Protocol to Define the Future of Imaging. J Clin Med 2021; 10:3641. [PMID: 34441937 PMCID: PMC8397117 DOI: 10.3390/jcm10163641] [Citation(s) in RCA: 13] [Impact Index Per Article: 3.3] [Reference Citation Analysis] [Abstract] [Key Words] [Grants] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 07/09/2021] [Revised: 08/12/2021] [Accepted: 08/13/2021] [Indexed: 02/06/2023] Open
Abstract
With stress echo (SE) 2020 study, a new standard of practice in stress imaging was developed and disseminated: the ABCDE protocol for functional testing within and beyond CAD. ABCDE protocol was the fruit of SE 2020, and is the seed of SE 2030, which is articulated in 12 projects: 1-SE in coronary artery disease (SECAD); 2-SE in diastolic heart failure (SEDIA); 3-SE in hypertrophic cardiomyopathy (SEHCA); 4-SE post-chest radiotherapy and chemotherapy (SERA); 5-Artificial intelligence SE evaluation (AI-SEE); 6-Environmental stress echocardiography and air pollution (ESTER); 7-SE in repaired Tetralogy of Fallot (SETOF); 8-SE in post-COVID-19 (SECOV); 9: Recovery by stress echo of conventionally unfit donor good hearts (RESURGE); 10-SE for mitral ischemic regurgitation (SEMIR); 11-SE in valvular heart disease (SEVA); 12-SE for coronary vasospasm (SESPASM). The study aims to recruit in the next 5 years (2021-2025) ≥10,000 patients followed for ≥5 years (up to 2030) from ≥20 quality-controlled laboratories from ≥10 countries. In this COVID-19 era of sustainable health care delivery, SE2030 will provide the evidence to finally recommend SE as the optimal and versatile imaging modality for functional testing anywhere, any time, and in any patient.
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Affiliation(s)
- Eugenio Picano
- CNR, Biomedicine Department, Institute of Clinical Physiology, 56100 Pisa, Italy; (M.D.N.); (C.C.)
| | - Quirino Ciampi
- Cardiology Division, Fatebenefratelli Hospital, 82100 Benevento, Italy; (Q.C.); (B.V.)
| | | | - Adelaide M. Arruda-Olson
- Department of Cardiovascular Medicine, Mayo Clinic, Rochester, MN 55905, USA; (A.M.A.-O.); (G.C.K.); (H.R.V.); (R.P.); (P.A.P.)
| | | | | | - Rosangela Cocchia
- Azienda Ospedaliera Rilevanza Nazionale A. Cardarelli Hospital, 80100 Naples, Italy; (R.C.); (E.B.)
| | - Eduardo Bossone
- Azienda Ospedaliera Rilevanza Nazionale A. Cardarelli Hospital, 80100 Naples, Italy; (R.C.); (E.B.)
| | - Elisa Merli
- Department of Cardiology, Ospedale per gli Infermi, Faenza, 48100 Ravenna, Italy;
| | - Garvan C. Kane
- Department of Cardiovascular Medicine, Mayo Clinic, Rochester, MN 55905, USA; (A.M.A.-O.); (G.C.K.); (H.R.V.); (R.P.); (P.A.P.)
| | - Albert Varga
- Institute of Family Medicine, Szeged University Medical School, University of Szeged, 6720 Szeged, Hungary; (A.V.); (G.A.)
| | - Gergely Agoston
- Institute of Family Medicine, Szeged University Medical School, University of Szeged, 6720 Szeged, Hungary; (A.V.); (G.A.)
| | | | - Doralisa Morrone
- Cardiothoracic Department, University of Pisa, 56100 Pisa, Italy;
| | - Iana Simova
- Heart and Brain Center of Excellence, Cardiology Department, University Hospital, Medical University, 5800 Pleven, Bulgaria; (I.S.); (M.S.)
| | - Martina Samardjieva
- Heart and Brain Center of Excellence, Cardiology Department, University Hospital, Medical University, 5800 Pleven, Bulgaria; (I.S.); (M.S.)
| | - Alla Boshchenko
- Cardiology Research Institute, Tomsk National Research Medical Centre of the Russian Academy of Sciences, 634009 Tomsk, Russia; (A.B.); (T.R.); (A.V.)
| | - Tamara Ryabova
- Cardiology Research Institute, Tomsk National Research Medical Centre of the Russian Academy of Sciences, 634009 Tomsk, Russia; (A.B.); (T.R.); (A.V.)
| | - Alexander Vrublevsky
- Cardiology Research Institute, Tomsk National Research Medical Centre of the Russian Academy of Sciences, 634009 Tomsk, Russia; (A.B.); (T.R.); (A.V.)
| | - Attila Palinkas
- Internal Medicine Department, Elisabeth Hospital, 6800 Hódmezővásárhely, Hungary;
| | - Eszter D. Palinkas
- Albert Szent-Gyorgyi Clinical Center, Department of Internal Medicine, Division of Non-Invasive Cardiology, University Hospital, 6725 Szeged, Hungary; (R.S.); (E.D.P.)
| | - Robert Sepp
- Albert Szent-Gyorgyi Clinical Center, Department of Internal Medicine, Division of Non-Invasive Cardiology, University Hospital, 6725 Szeged, Hungary; (R.S.); (E.D.P.)
| | | | - Hector R. Villarraga
- Department of Cardiovascular Medicine, Mayo Clinic, Rochester, MN 55905, USA; (A.M.A.-O.); (G.C.K.); (H.R.V.); (R.P.); (P.A.P.)
| | - Tamara Kovačević Preradović
- Clinic of Cardiovascular Diseases, University Clinical Centre of the Republic of Srpska, 78 000 Banja Luka, Bosnia and Herzegovina; (T.K.P.); (T.B.)
| | - Rodolfo Citro
- Cardiology Department and Echocardiography Lab, University Hospital “San Giovanni di Dio e Ruggi d’Aragona”, 84100 Salerno, Italy;
| | - Miguel Amor
- Cardiology Department, Ramos Mejia Hospital, Buenos Aires C1221, Argentina; (M.A.); (H.M.); (M.S.)
| | - Hugo Mosto
- Cardiology Department, Ramos Mejia Hospital, Buenos Aires C1221, Argentina; (M.A.); (H.M.); (M.S.)
| | - Michael Salamè
- Cardiology Department, Ramos Mejia Hospital, Buenos Aires C1221, Argentina; (M.A.); (H.M.); (M.S.)
| | - Paul Leeson
- RDM Division of Cardiovascular Medicine, Cardiovascular Clinical Research Facility, University of Oxford, Oxford OX3 9DU, UK;
| | - Cristina Mangia
- CNR, ISAC-Institute of Sciences of Atmosphere and Climate, 73100 Lecce, Italy;
| | - Nicola Gaibazzi
- Cardiology Department, Parma University Hospital, 43100 Parma, Italy; (N.G.); (D.T.)
| | - Domenico Tuttolomondo
- Cardiology Department, Parma University Hospital, 43100 Parma, Italy; (N.G.); (D.T.)
| | - Costantina Prota
- Cardiology Department, Vallo della Lucania Hospital, 84100 Salerno, Italy;
| | - Jesus Peteiro
- CHUAC-Complexo Hospitalario Universitario A Coruna, CIBER-CV, University of A Coruna, 15070 La Coruna, Spain;
| | | | - Antonello D’Andrea
- UOC Cardiologia/UTIC/Emodinamica, PO Umberto I, Nocera Inferiore (ASL Salerno)—Università Luigi Vanvitelli della Campania, 84014 Salerno, Italy; (A.D.); (P.C.)
| | - Fausto Rigo
- Department of Cardiology, Dolo Hospital, 30031 Venice, Italy;
| | - Aleksandra Nikolic
- Department of Noninvasive Cardiology, Institute for Cardiovascular Diseases Dedinje, School of Medicine, Belgrade 11000, Serbia; (A.N.); (M.O.)
| | - Miodrag Ostojic
- Department of Noninvasive Cardiology, Institute for Cardiovascular Diseases Dedinje, School of Medicine, Belgrade 11000, Serbia; (A.N.); (M.O.)
| | - Jorge Lowenstein
- Cardiodiagnosticos, Investigaciones Medicas Center, Buenos Aires C1082, Argentina; (J.L.); (R.A.); (D.M.L.H.); (P.M.M.)
| | - Rosina Arbucci
- Cardiodiagnosticos, Investigaciones Medicas Center, Buenos Aires C1082, Argentina; (J.L.); (R.A.); (D.M.L.H.); (P.M.M.)
| | - Diego M. Lowenstein Haber
- Cardiodiagnosticos, Investigaciones Medicas Center, Buenos Aires C1082, Argentina; (J.L.); (R.A.); (D.M.L.H.); (P.M.M.)
| | - Pablo M. Merlo
- Cardiodiagnosticos, Investigaciones Medicas Center, Buenos Aires C1082, Argentina; (J.L.); (R.A.); (D.M.L.H.); (P.M.M.)
| | - Karina Wierzbowska-Drabik
- Department of Cardiology, Bieganski Hospital, Medical University, 91-347 Lodz, Poland; (K.W.-D.); (J.D.K.)
| | - Jaroslaw D. Kasprzak
- Department of Cardiology, Bieganski Hospital, Medical University, 91-347 Lodz, Poland; (K.W.-D.); (J.D.K.)
| | - Maciej Haberka
- Department of Cardiology, SHS, Medical University of Silesia, 40-752 Katowice, Poland;
| | - Ana Cristina Camarozano
- Medicine Department, Hospital de Clinicas UFPR, Federal University of Paranà, Curitiba 80000-000, Brazil;
| | - Nithima Ratanasit
- Department of Medicine, Division of Cardiology, Siriraj Hospital, Mahidol University, Bangkok 10700, Thailand;
| | - Fabio Mori
- SOD Diagnostica Cardiovascolare, DAI Cardio-Toraco-Vascolare, Azienda Ospedaliera-Universitaria Careggi, 50139 Firenze, Italy; (F.M.); (M.G.D.); (L.T.); (A.M.); (I.O.); (A.M.)
| | - Maria Grazia D’Alfonso
- SOD Diagnostica Cardiovascolare, DAI Cardio-Toraco-Vascolare, Azienda Ospedaliera-Universitaria Careggi, 50139 Firenze, Italy; (F.M.); (M.G.D.); (L.T.); (A.M.); (I.O.); (A.M.)
| | - Luigi Tassetti
- SOD Diagnostica Cardiovascolare, DAI Cardio-Toraco-Vascolare, Azienda Ospedaliera-Universitaria Careggi, 50139 Firenze, Italy; (F.M.); (M.G.D.); (L.T.); (A.M.); (I.O.); (A.M.)
| | - Alessandra Milazzo
- SOD Diagnostica Cardiovascolare, DAI Cardio-Toraco-Vascolare, Azienda Ospedaliera-Universitaria Careggi, 50139 Firenze, Italy; (F.M.); (M.G.D.); (L.T.); (A.M.); (I.O.); (A.M.)
| | - Iacopo Olivotto
- SOD Diagnostica Cardiovascolare, DAI Cardio-Toraco-Vascolare, Azienda Ospedaliera-Universitaria Careggi, 50139 Firenze, Italy; (F.M.); (M.G.D.); (L.T.); (A.M.); (I.O.); (A.M.)
| | - Alberto Marchi
- SOD Diagnostica Cardiovascolare, DAI Cardio-Toraco-Vascolare, Azienda Ospedaliera-Universitaria Careggi, 50139 Firenze, Italy; (F.M.); (M.G.D.); (L.T.); (A.M.); (I.O.); (A.M.)
| | | | - Angela Zagatina
- Cardiology Department, Saint Petersburg State University Hospital, 199034 Saint Petersburg, Russia;
| | - Ratnasari Padang
- Department of Cardiovascular Medicine, Mayo Clinic, Rochester, MN 55905, USA; (A.M.A.-O.); (G.C.K.); (H.R.V.); (R.P.); (P.A.P.)
| | - Milica Dekleva
- Clinical Cardiology Department, Clinical Hospital Zvezdara, Medical School, University of Belgrade, Belgrade 11000, Serbia;
| | - Ana Djordievic-Dikic
- University Clinical Centre of Serbia, Medical School, Cardiology Clinic, University of Belgrade, 11000 Belgrade, Serbia; (A.D.-D.); (N.B.); (M.T.); (V.G.); (B.B.)
| | - Nikola Boskovic
- University Clinical Centre of Serbia, Medical School, Cardiology Clinic, University of Belgrade, 11000 Belgrade, Serbia; (A.D.-D.); (N.B.); (M.T.); (V.G.); (B.B.)
| | - Milorad Tesic
- University Clinical Centre of Serbia, Medical School, Cardiology Clinic, University of Belgrade, 11000 Belgrade, Serbia; (A.D.-D.); (N.B.); (M.T.); (V.G.); (B.B.)
| | - Vojislav Giga
- University Clinical Centre of Serbia, Medical School, Cardiology Clinic, University of Belgrade, 11000 Belgrade, Serbia; (A.D.-D.); (N.B.); (M.T.); (V.G.); (B.B.)
| | - Branko Beleslin
- University Clinical Centre of Serbia, Medical School, Cardiology Clinic, University of Belgrade, 11000 Belgrade, Serbia; (A.D.-D.); (N.B.); (M.T.); (V.G.); (B.B.)
| | - Giovanni Di Salvo
- Division of Pediatric Cardiology, University Hospital, 35100 Padua, Italy;
| | | | - Matteo Cameli
- Division of Cardiology, University Hospital, 53100 Siena, Italy; (M.C.); (G.E.M.)
| | - Giulia Elena Mandoli
- Division of Cardiology, University Hospital, 53100 Siena, Italy; (M.C.); (G.E.M.)
| | - Tonino Bombardini
- Clinic of Cardiovascular Diseases, University Clinical Centre of the Republic of Srpska, 78 000 Banja Luka, Bosnia and Herzegovina; (T.K.P.); (T.B.)
| | - Pio Caso
- UOC Cardiologia/UTIC/Emodinamica, PO Umberto I, Nocera Inferiore (ASL Salerno)—Università Luigi Vanvitelli della Campania, 84014 Salerno, Italy; (A.D.); (P.C.)
| | - Jelena Celutkiene
- Centre of Cardiology and Angiology, Clinic of Cardiac and Vascular Diseases, Faculty of Medicine, Institute of Clinical Medicine, Vilnius University, LT-03101 Vilnius, Lithuania;
| | - Andrea Barbieri
- Noninvasive Cardiology, University Hospital, 43100 Parma, Italy;
| | - Giovanni Benfari
- Cardiology Department, University of Verona, 37121 Verona, Italy;
| | - Ylenia Bartolacelli
- Paediatric Cardiology and Adult Congenital Heart Disease Unit, S. Orsola-Malpighi Hospital, 40100 Bologna, Italy;
| | - Alessandro Malagoli
- Nephro-Cardiovascular Department, Division of Cardiology, Baggiovara Hospital, University of Modena and Reggio Emilia, 41126 Modena, Italy;
| | - Francesca Bursi
- ASST Santi Paolo e Carlo, Presidio Ospedale San Paolo, 20100 Milano, Italy;
| | - Francesca Mantovani
- Azienda Unità Sanitaria Locale—IRCCS di Reggio Emilia, Cardiology, 42100 Reggio Emilia, Italy;
| | - Bruno Villari
- Cardiology Division, Fatebenefratelli Hospital, 82100 Benevento, Italy; (Q.C.); (B.V.)
| | - Antonello Russo
- Association for Public Health “Salute Pubblica”, 72100 Brindisi, Italy;
| | - Michele De Nes
- CNR, Biomedicine Department, Institute of Clinical Physiology, 56100 Pisa, Italy; (M.D.N.); (C.C.)
| | - Clara Carpeggiani
- CNR, Biomedicine Department, Institute of Clinical Physiology, 56100 Pisa, Italy; (M.D.N.); (C.C.)
| | - Ines Monte
- Echocardiography Laboratory, Cardio-Thorax-Vascular Department, “ Policlinico Vittorio Emanuele”, Catania University, 95100 Catania, Italy;
| | - Federica Re
- Ospedale San Camillo, Cardiology Division, 00100 Rome, Italy;
| | - Carlos Cotrim
- Heart Center, Hospital da Cruz Vermelha, Lisbon, and Medical School of University of Algarve, 1549-008 Lisbon, Portugal;
| | - Giuseppe Bilardo
- UOC di Cardiologia, ULSS1 DOLOMITI, Presidio Ospedaliero di Feltre, 32032 Belluno, Italy;
| | - Ariel K. Saad
- División de Cardiología, Hospital de Clínicas José de San Martín, Buenos Aires C1120, Argentina;
| | - Arnas Karuzas
- Ligence Medical Solutions, 49206 Vilnius, Lithuania; (A.K.); (D.M.)
| | | | - Paolo Colonna
- Cardiology Hospital, Policlinico University Hospital of Bari, 70100 Bari, Italy;
- Italian Society of Echocardiography and Cardiovascular Imaging, 20138 Milan, Italy; (F.A.-C.); (M.P.)
| | - Francesco Antonini-Canterin
- Italian Society of Echocardiography and Cardiovascular Imaging, 20138 Milan, Italy; (F.A.-C.); (M.P.)
- Cardiac Prevention and Rehabilitation Unit, Highly Specialized Rehabilitation Hospital Motta di Livenza, Motta di Livenza, 31045 Treviso, Italy
| | - Mauro Pepi
- Italian Society of Echocardiography and Cardiovascular Imaging, 20138 Milan, Italy; (F.A.-C.); (M.P.)
- Centro Cardiologico Monzino, IRCCS, 20138 Milan, Italy
| | - Patricia A. Pellikka
- Department of Cardiovascular Medicine, Mayo Clinic, Rochester, MN 55905, USA; (A.M.A.-O.); (G.C.K.); (H.R.V.); (R.P.); (P.A.P.)
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D’Andrea A, Ciampi Q, Russo A, Forni A, Mangia C, Picano E. The effects of lockdown-induced air quality changes on the results of cardiac functional stress testing in coronary artery disease and heart failure patients. ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH INTERNATIONAL 2021; 28:41423-41430. [PMID: 33786763 PMCID: PMC8009465 DOI: 10.1007/s11356-021-13622-1] [Citation(s) in RCA: 3] [Impact Index Per Article: 0.8] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Subscribe] [Scholar Register] [Received: 01/20/2021] [Accepted: 03/18/2021] [Indexed: 05/05/2023]
Abstract
In vulnerable subjects, the increase in air pollution worsens the signs of myocardial ischemia. Lockdown during COVID-19 pandemics substantially cleaned the air. The objective of this is to assess the effects of air cleaning due to lockdown on stress echocardiography (SE) results. We enrolled 19 patients with chronic coronary artery disease and/or heart failure referred to SE (semi-supine bicycle exercise, n = 8, or dipyridamole, n = 11). Before and soon after lockdown, we assessed regional wall motion abnormalities (abnormal value: worsening of ≥ 2 segments), B-lines (a sign of pulmonary congestion, 4-site simplified scan, abnormal value ≥ 2), and coronary flow velocity reserve in left anterior descending artery (CFVR, abnormal value < 2.0). Local air quality indicators (same day of SE) of fine particulate matter (PM2.5) and nitrogen dioxide (NO2) were obtained from publicly available data sets of the regional authority of environmental protection. After lockdown, NO2 concentration decreased from 19 ± 10 to 10 ± 4 μg/m3 (p = 0.006). After lockdown, abnormal responses remained unchanged for ischemia (21% vs 16%, p = ns) and decreased for B-lines (42% vs 5%, p = 0.008) and CFVR (84 vs 42%, p = 0.007). Changes in coronary flow velocity reserve (CFVR) were correlated to same-day variations in NO2 (r = -0.578, p = 0.010) and preceding 30-day changes in PM2.5 (r = -0.518, p = 0.023). After lockdown, air cleaning was associated with a beneficial effect on coronary small vessel dysfunction and alveolar-capillary barrier distress mirrored by improvement of CFVR and B-lines during SE in vulnerable patients. ClinicalTrials.gov Identifier: NCT 030.49995.
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Affiliation(s)
| | - Quirino Ciampi
- Cardiology Division, Fatebenefratelli Hospital, Benevento, Italy
| | - Antonello Russo
- Association for Public Health “Salute Pubblica”, Brindisi, Italy
| | - Alberto Forni
- Cardiology Division, Nocera Inferiore Hospital, Nocera Inferiore, Italy
| | - Cristina Mangia
- ISAC-Institute of Sciences of Atmosphere and Climate, CNR, Lecce, Italy
| | - Eugenio Picano
- Institute of Clinical Physiology, Biomedicine Department, CNR, Pisa, Italy
| | - on behalf of the Stress Echo 2020 study group of the Italian Society of Echocardiography and Cardiovascular Imaging
- Cardiology Division, Nocera Inferiore Hospital, Nocera Inferiore, Italy
- Cardiology Division, Fatebenefratelli Hospital, Benevento, Italy
- Association for Public Health “Salute Pubblica”, Brindisi, Italy
- ISAC-Institute of Sciences of Atmosphere and Climate, CNR, Lecce, Italy
- Institute of Clinical Physiology, Biomedicine Department, CNR, Pisa, Italy
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19
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Imaging Quality Control, Methodology Harmonization and Clinical Data Management in Stress Echo 2030. J Clin Med 2021; 10:jcm10143020. [PMID: 34300186 PMCID: PMC8305320 DOI: 10.3390/jcm10143020] [Citation(s) in RCA: 1] [Impact Index Per Article: 0.3] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 04/28/2021] [Revised: 06/18/2021] [Accepted: 07/02/2021] [Indexed: 02/06/2023] Open
Abstract
Stress echo (SE) 2030 study is an international, prospective, multicenter cohort study that will include >10,000 patients from ≥20 centers from ≥10 countries. It represents the logical and chronological continuation of the SE 2020 study, which developed, validated, and disseminated the “ABCDE protocol” of SE, more suitable than conventional SE to describe the complex vulnerabilities of the contemporary patient within and beyond coronary artery disease. SE2030 was started with a recruitment plan from 2021 to 2025 (and follow-up to 2030) with 12 subprojects (ranging from coronary artery disease to valvular and post-COVID-19 patients). With these features, the study poses particular challenges on quality control assurance, methodological harmonization, and data management. One of the significant upgrades of SE2030 compared to SE2020 was developing and implementing a Research Electronic Data Capture (REDCap)-based infrastructure for interactive and entirely web-based data management to integrate and optimize reproducible clinical research data. The purposes of our paper were: first, to describe the methodology used for quality control of imaging data, and second, to present the informatic infrastructure developed on RedCap platform for data entry, storage, and management in a large-scale multicenter study.
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20
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Bombardini T, Zagatina A, Ciampi Q, Arbucci R, Merlo PM, Haber DML, Morrone D, D’Andrea A, Djordjevic-Dikic A, Beleslin B, Tesic M, Boskovic N, Giga V, de Castro e Silva Pretto JL, Daros CB, Amor M, Mosto H, Salamè M, Monte I, Citro R, Simova I, Samardjieva M, Wierzbowska-Drabik K, Kasprzak JD, Gaibazzi N, Cortigiani L, Scali MC, Pepi M, Antonini-Canterin F, Torres MAR, Nes MD, Ostojic M, Carpeggiani C, Kovačević-Preradović T, Lowenstein J, Arruda-Olson AM, Pellikka PA, Picano E. Hemodynamic Heterogeneity of Reduced Cardiac Reserve Unmasked by Volumetric Exercise Echocardiography. J Clin Med 2021; 10:2906. [PMID: 34209955 PMCID: PMC8267648 DOI: 10.3390/jcm10132906] [Citation(s) in RCA: 5] [Impact Index Per Article: 1.3] [Reference Citation Analysis] [Abstract] [Key Words] [Grants] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 05/27/2021] [Revised: 06/23/2021] [Accepted: 06/23/2021] [Indexed: 12/04/2022] Open
Abstract
BACKGROUND Two-dimensional volumetric exercise stress echocardiography (ESE) provides an integrated view of left ventricular (LV) preload reserve through end-diastolic volume (EDV) and LV contractile reserve (LVCR) through end-systolic volume (ESV) changes. PURPOSE To assess the dependence of cardiac reserve upon LVCR, EDV, and heart rate (HR) during ESE. METHODS We prospectively performed semi-supine bicycle or treadmill ESE in 1344 patients (age 59.8 ± 11.4 years; ejection fraction = 63 ± 8%) referred for known or suspected coronary artery disease. All patients had negative ESE by wall motion criteria. EDV and ESV were measured by biplane Simpson rule with 2-dimensional echocardiography. Cardiac index reserve was identified by peak-rest value. LVCR was the stress-rest ratio of force (systolic blood pressure by cuff sphygmomanometer/ESV, abnormal values ≤2.0). Preload reserve was defined by an increase in EDV. Cardiac index was calculated as stroke volume index * HR (by EKG). HR reserve (stress/rest ratio) <1.85 identified chronotropic incompetence. RESULTS Of the 1344 patients, 448 were in the lowest tertile of cardiac index reserve with stress. Of them, 303 (67.6%) achieved HR reserve <1.85; 252 (56.3%) had an abnormal LVCR and 341 (76.1%) a reduction of preload reserve, with 446 patients (99.6%) showing ≥1 abnormality. At binary logistic regression analysis, reduced preload reserve (odds ratio [OR]: 5.610; 95% confidence intervals [CI]: 4.025 to 7.821), chronotropic incompetence (OR: 3.923, 95% CI: 2.915 to 5.279), and abnormal LVCR (OR: 1.579; 95% CI: 1.105 to 2.259) were independently associated with lowest tertile of cardiac index reserve at peak stress. CONCLUSIONS Heart rate assessment and volumetric echocardiography during ESE identify the heterogeneity of hemodynamic phenotypes of impaired chronotropic, preload or LVCR underlying a reduced cardiac reserve.
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Affiliation(s)
- Tonino Bombardini
- Clinical Center of The Republic of Srpska, Faculty of Medicine, University of Banja-Luka, 78000 Banja-Luka, Bosnia and Herzegovina; (T.B.); (M.O.); (T.K.-P.)
| | - Angela Zagatina
- Cardiology Department, Saint Petersburg University Clinic, Saint Petersburg University, 199034 St Petersburg, Russia;
| | - Quirino Ciampi
- Cardiology Division, Fatebenefratelli Hospital, 82100 Benevento, Italy
| | - Rosina Arbucci
- Cardiodiagnosticos, Investigaciones Medicas, C1082 ACB Buenos Aires, Argentina; (R.A.); (P.M.M.); (D.M.L.H.); (J.L.)
| | - Pablo Martin Merlo
- Cardiodiagnosticos, Investigaciones Medicas, C1082 ACB Buenos Aires, Argentina; (R.A.); (P.M.M.); (D.M.L.H.); (J.L.)
| | - Diego M. Lowenstein Haber
- Cardiodiagnosticos, Investigaciones Medicas, C1082 ACB Buenos Aires, Argentina; (R.A.); (P.M.M.); (D.M.L.H.); (J.L.)
| | - Doralisa Morrone
- Cardiothoracic Department, University of Pisa, 56100 Pisa, Italy;
| | - Antonello D’Andrea
- Department of Cardiology-Umberto I° Hospital Nocera Inferiore (Salerno)-L. Vanvitelli University of Campania, 84014 Nocera Inferiore, Italy;
| | - Ana Djordjevic-Dikic
- Cardiology Clinic, Clinical Center of Serbia, Medical School, University of Belgrade, 11000 Belgrade, Serbia; (A.D.-D.); (B.B.); (M.T.); (N.B.); (V.G.)
| | - Branko Beleslin
- Cardiology Clinic, Clinical Center of Serbia, Medical School, University of Belgrade, 11000 Belgrade, Serbia; (A.D.-D.); (B.B.); (M.T.); (N.B.); (V.G.)
| | - Milorad Tesic
- Cardiology Clinic, Clinical Center of Serbia, Medical School, University of Belgrade, 11000 Belgrade, Serbia; (A.D.-D.); (B.B.); (M.T.); (N.B.); (V.G.)
| | - Nikola Boskovic
- Cardiology Clinic, Clinical Center of Serbia, Medical School, University of Belgrade, 11000 Belgrade, Serbia; (A.D.-D.); (B.B.); (M.T.); (N.B.); (V.G.)
| | - Vojislav Giga
- Cardiology Clinic, Clinical Center of Serbia, Medical School, University of Belgrade, 11000 Belgrade, Serbia; (A.D.-D.); (B.B.); (M.T.); (N.B.); (V.G.)
| | | | | | - Miguel Amor
- Cardiology Department, Ramos Mejia Hospital, C1221 ADC Buenos Aires, Argentina; (M.A.); (H.M.); (M.S.)
| | - Hugo Mosto
- Cardiology Department, Ramos Mejia Hospital, C1221 ADC Buenos Aires, Argentina; (M.A.); (H.M.); (M.S.)
| | - Michael Salamè
- Cardiology Department, Ramos Mejia Hospital, C1221 ADC Buenos Aires, Argentina; (M.A.); (H.M.); (M.S.)
| | - Ines Monte
- Cardio-Thorax-Vascular Department, Echocardiography Lab, Policlinico Vittorio Emanuele, Catania University, 95124 Catania, Italy;
| | - Rodolfo Citro
- Cardio-Thoracic-Vascular-Department, University Hospital “San Giovanni di Dio e Ruggi d’Aragona”, 84125 Salerno, Italy;
| | - Iana Simova
- Heart and Brain Center of Excellence, University Hospital, 5800 Sofia, Bulgaria; (I.S.); (M.S.)
| | - Martina Samardjieva
- Heart and Brain Center of Excellence, University Hospital, 5800 Sofia, Bulgaria; (I.S.); (M.S.)
| | - Karina Wierzbowska-Drabik
- Department of Cardiology, Bieganski Hospital, Medical University, 93-487 Lodz, Poland; (K.W.-D.); (J.D.K.)
| | - Jaroslaw D. Kasprzak
- Department of Cardiology, Bieganski Hospital, Medical University, 93-487 Lodz, Poland; (K.W.-D.); (J.D.K.)
| | - Nicola Gaibazzi
- Cardiology Department, Parma University Hospital, 43100 Parma, Italy;
| | | | | | - Mauro Pepi
- Centro Cardiologico Monzino, IRCCS, 20138 Milano, Italy;
| | - Francesco Antonini-Canterin
- Highly Specialized Rehabilitation Hospital Motta di Livenza, Cardiac Prevention and Rehabilitation Unit, 31045 Treviso, Italy;
| | - Marco A. R. Torres
- Department of Cardiology, Federal University of Rio Grande do Sul, 90040-060 Porto Alegre, Brazil;
| | - Michele De Nes
- Biomedicine Department, CNR, Institute of Clinical Physiology, 56124 Pisa, Italy; (M.D.N.); (C.C.); (E.P.)
| | - Miodrag Ostojic
- Clinical Center of The Republic of Srpska, Faculty of Medicine, University of Banja-Luka, 78000 Banja-Luka, Bosnia and Herzegovina; (T.B.); (M.O.); (T.K.-P.)
| | - Clara Carpeggiani
- Biomedicine Department, CNR, Institute of Clinical Physiology, 56124 Pisa, Italy; (M.D.N.); (C.C.); (E.P.)
| | - Tamara Kovačević-Preradović
- Clinical Center of The Republic of Srpska, Faculty of Medicine, University of Banja-Luka, 78000 Banja-Luka, Bosnia and Herzegovina; (T.B.); (M.O.); (T.K.-P.)
| | - Jorge Lowenstein
- Cardiodiagnosticos, Investigaciones Medicas, C1082 ACB Buenos Aires, Argentina; (R.A.); (P.M.M.); (D.M.L.H.); (J.L.)
| | - Adelaide M. Arruda-Olson
- Department of Cardiovascular Diseases, Mayo Clinic, Rochester, MN 55901, USA; (A.M.A.-O.); (P.A.P.)
| | - Patricia A. Pellikka
- Department of Cardiovascular Diseases, Mayo Clinic, Rochester, MN 55901, USA; (A.M.A.-O.); (P.A.P.)
| | - Eugenio Picano
- Biomedicine Department, CNR, Institute of Clinical Physiology, 56124 Pisa, Italy; (M.D.N.); (C.C.); (E.P.)
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21
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Woodward W, Dockerill C, McCourt A, Upton R, O'Driscoll J, Balkhausen K, Chandrasekaran B, Firoozan S, Kardos A, Wong K, Woodward G, Sarwar R, Sabharwal N, Benedetto E, Spagou N, Sharma R, Augustine D, Tsiachristas A, Senior R, Leeson P, Boardman H, d'Arcy J, Abraheem A, Banypersad S, Boos C, Bulugahapitiya S, Butts J, Coles D, Easaw J, Hamdan H, Jamil-Copley S, Kanaganayagam G, Mwambingu T, Pantazis A, Papachristidis A, Rajani R, Rasheed MA, Razvi NA, Rekhraj S, Ripley DP, Rose K, Scheuermann-Freestone M, Schofield R, Sultan A. Real-world performance and accuracy of stress echocardiography: the EVAREST observational multi-centre study. Eur Heart J Cardiovasc Imaging 2021; 23:689-698. [PMID: 34148078 PMCID: PMC9016358 DOI: 10.1093/ehjci/jeab092] [Citation(s) in RCA: 3] [Impact Index Per Article: 0.8] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 03/15/2021] [Accepted: 05/04/2021] [Indexed: 12/22/2022] Open
Abstract
Aims Stress echocardiography is widely used to identify obstructive coronary artery disease (CAD). High accuracy is reported in expert hands but is dependent on operator training and image quality. The EVAREST study provides UK-wide data to evaluate real-world performance and accuracy of stress echocardiography. Methods and results Participants undergoing stress echocardiography for CAD were recruited from 31 hospitals. Participants were followed up through health records which underwent expert adjudication. Cardiac outcome was defined as anatomically or functionally significant stenosis on angiography, revascularization, medical management of ischaemia, acute coronary syndrome, or cardiac-related death within 6 months. A total of 5131 patients (55% male) participated with a median age of 65 years (interquartile range 57–74). 72.9% of studies used dobutamine and 68.5% were contrast studies. Inducible ischaemia was present in 19.3% of scans. Sensitivity and specificity for prediction of a cardiac outcome were 95.4% and 96.0%, respectively, with an accuracy of 95.9%. Sub-group analysis revealed high levels of predictive accuracy across a wide range of patient and protocol sub-groups, with the presence of a resting regional wall motion abnormalitiy significantly reducing the performance of both dobutamine (P < 0.01) and exercise (P < 0.05) stress echocardiography. Overall accuracy remained consistently high across all participating hospitals. Conclusion Stress echocardiography has high accuracy across UK-based hospitals and thus indicates stress echocardiography is being delivered effectively in real-world practice, reinforcing its role as a first-line investigation in the assessment of patients with stable chest pain.
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Affiliation(s)
- William Woodward
- Cardiovascular Clinical Research Facility, RDM Division of Cardiovascular Medicine, University of Oxford, Oxford OX3 9DU, UK
| | - Cameron Dockerill
- Cardiovascular Clinical Research Facility, RDM Division of Cardiovascular Medicine, University of Oxford, Oxford OX3 9DU, UK
| | - Annabelle McCourt
- Cardiovascular Clinical Research Facility, RDM Division of Cardiovascular Medicine, University of Oxford, Oxford OX3 9DU, UK
| | - Ross Upton
- Cardiovascular Clinical Research Facility, RDM Division of Cardiovascular Medicine, University of Oxford, Oxford OX3 9DU, UK.,Ultromics Ltd, Wood Centre for Innovation, OxfordOX3 8SB, UK
| | - Jamie O'Driscoll
- Department of Cardiology, St George's University Hospitals NHS Foundation Trust, London SW17 0QT, UK.,School of Human and Life Sciences, Canterbury Christ Church University, Canterbury CT1 1QU, UK
| | - Katrin Balkhausen
- Department of Cardiology, Royal Berkshire Hospitals NHS Foundation Trust, Reading RG1 5AN, UK
| | | | - Soroosh Firoozan
- Department of Cardiology, Buckinghamshire Healthcare NHS Trust, High Wycombe HP11 2TT, UK
| | - Attila Kardos
- Department of Cardiology, Milton Keynes University Hospital NHS Foundation Trust, Milton Keynes MK6 5LD, UK
| | - Kenneth Wong
- Lancashire Cardiac Centre, Blackpool Teaching Hospitals NHS Foundation Trust, Blackpool FY3 8NP, UK
| | - Gary Woodward
- Ultromics Ltd, Wood Centre for Innovation, OxfordOX3 8SB, UK
| | - Rizwan Sarwar
- Ultromics Ltd, Wood Centre for Innovation, OxfordOX3 8SB, UK.,Oxford Heart Centre, Oxford University Hospitals NHS Foundation Trust, Oxford, OX3 9DU, UK
| | - Nikant Sabharwal
- Oxford Heart Centre, Oxford University Hospitals NHS Foundation Trust, Oxford, OX3 9DU, UK
| | - Elena Benedetto
- Cardiovascular Clinical Research Facility, RDM Division of Cardiovascular Medicine, University of Oxford, Oxford OX3 9DU, UK
| | - Nancy Spagou
- Ultromics Ltd, Wood Centre for Innovation, OxfordOX3 8SB, UK
| | - Rajan Sharma
- Department of Cardiology, St George's University Hospitals NHS Foundation Trust, London SW17 0QT, UK
| | - Daniel Augustine
- Department of Cardiology, Royal United Hospitals NHS Foundation Trust, Bath, BA1 3NG, UK
| | - Apostolos Tsiachristas
- Health Economic Research Centre, Nuffield Department of Population Health, University of Oxford, Oxford OX3 7LF, UK
| | - Roxy Senior
- National Heart and Lung Institute, Imperial College London, London SW3 6LY, UK.,Department of Cardiology, Royal Brompton and Harefield NHS Foundation Trust, London SW3 6NJ, UK.,Department of Cardiology, London North West University Healthcare NHS Trust, London HA1 3UJ, UK
| | - Paul Leeson
- Cardiovascular Clinical Research Facility, RDM Division of Cardiovascular Medicine, University of Oxford, Oxford OX3 9DU, UK
| | - Henry Boardman
- Department of Cardiology, Milton Keynes University Hospital NHS Foundation Trust, Milton Keynes MK6 5LD, UK.,Oxford Heart Centre, Oxford University Hospitals NHS Foundation Trust, Oxford, OX3 9DU, UK
| | - Joanna d'Arcy
- Oxford Heart Centre, Oxford University Hospitals NHS Foundation Trust, Oxford, OX3 9DU, UK
| | - Abraheem Abraheem
- Department of Cardiology, Tameside and Glossop Integrated Care NHS Foundation Trust, Ashton-under-Lyne, UK
| | - Sanjay Banypersad
- Department of Cardiology, East Lancashire Hospitals NHS Trust, Burnley, UK
| | - Christopher Boos
- Department of Cardiology, Poole Hospital NHS Foundation Trust, Poole, UK
| | | | - Jeremy Butts
- Department of Cardiology, Calderdale and Huddersfield NHS Foundation Trust, Calderdale, UK
| | - Duncan Coles
- Department of Cardiology, Mid Essex NHS Hospital Services NHS Trust, Broomfield, UK
| | - Jacob Easaw
- Department of Cardiology, Royal United Hospitals NHS Foundation Trust, Bath, BA1 3NG, UK
| | - Haytham Hamdan
- Department of Cardiology, Wrightington, Wigan and Leigh NHS Foundation Trust, Wigan, UK
| | - Shahnaz Jamil-Copley
- Department of Cardiology, Nottingham University Hospitals NHS Trust, Nottingham, UK
| | - Gajen Kanaganayagam
- Department of Cardiology, Chelsea and Westminster Hospital NHS Foundation Trust, London, UK
| | - Tom Mwambingu
- Department of Cardiology, The Mid Yorkshire Hospitals NHS Trust, Pinderfields, UK
| | - Antonis Pantazis
- Department of Cardiology, North Middlesex University Hospital NHS Trust, London, UK
| | | | - Ronak Rajani
- Department of Cardiology, Guy's and St Thomas' NHS Foundation Trust, London, UK
| | | | - Naveed A Razvi
- Department of Cardiology, East Suffolk and North Essex NHS Foundation Trust, Ipswich, UK
| | - Sushma Rekhraj
- Department of Cardiology, Nottingham University Hospitals NHS Trust, Nottingham, UK
| | - David P Ripley
- Department of Cardiology, Northumbria Healthcare NHS Foundation Trust, North Tyneside, UK
| | - Kathleen Rose
- Department of Cardiology, Northampton General Hospital NHS Trust, Northampton, UK
| | | | - Rebecca Schofield
- Department of Cardiology, North West Anglia NHS Foundation Trust, Peterborough, UK
| | - Ayyaz Sultan
- Department of Cardiology, Wrightington, Wigan and Leigh NHS Foundation Trust, Wigan, UK
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22
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Bombardini T, Cortigiani L, Ciampi Q, Ostojic MC, Kovacevic-Preradovic T, Picano E. The prognostic value of stroke work/end-diastolic volume ratio during stress echocardiography. Acta Cardiol 2021; 76:384-395. [PMID: 32233739 DOI: 10.1080/00015385.2020.1746054] [Citation(s) in RCA: 1] [Impact Index Per Article: 0.3] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 10/24/2022]
Abstract
BACKGROUND The ventricular stroke work (SW) refers to the work done by the left ventricle to eject the volume of blood during one cardiac cycle. The cath-lab relationship between SW and end-diastolic volume (EDV) is the preload-recruitable SW (PRSW). Recently a non-invasive single-beat PRSW (SBPRSW) has been proposed. However, the single beat formula needs mathematical skillness, and extra software. Aim of this study was to compare the non-invasive SBPRSW with the simpler non-invasive SW/EDVratio in the stress-echo lab. METHODS We studied 692 patients, age 62 ± 12 years, ejection fraction 50 ± 17%, with negative stress echo (SE)(exercise, n = 130, dobutamine, n = 124, dipyridamole, n = 438) and follow-up data. The PRSW was estimated at rest and at peak stress by the SBPRSW technique and compared with the SW/EDV. All patients were followed-up. Event rates were estimated with Kaplan-Meier curves. RESULTS SBPRSW and SW/EDV were linearly correlated at rest (r = 0.842, p < .001) and at peak stress (r = 0.860, p < .001). During a median follow-up of 20 months (first quartile 8, third quartile 40 months), 132 major events were registered: at receiver operating characteristic (ROC) analysis rest SBPRSW vs. SW/EDV (AUC 0.691 vs. 0.722) and peak stress (AUC 0.744 vs. 0.800) demonstrated both a significant prognostic power (all p < .001) with non-inferior survival prediction of the simpler SW/EDV ratio at Kaplan-Meier curves (Chi-square rest = 38, peak = 56) vs. SBPRSW (Chi-square rest = 14, peak = 42). CONCLUSIONS The data obtained with the non-invasive SBPRSW and by the simpler SW/EDV are highly comparable. PRSW with either SB or SW/EDV approach is effective in predicting follow-up events.
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Affiliation(s)
- Tonino Bombardini
- Faculty of Medicine, Clinical Center of The Republic of Srpska, University of Banja-Luka, Banja-Luka, Bosnia-Herzegovina
| | | | - Quirino Ciampi
- Cardiology Division, Fatebenefratelli Hospital, Benevento, Italy
| | - Miodrag C. Ostojic
- Faculty of Medicine, Clinical Center of The Republic of Srpska, University of Banja-Luka, Banja-Luka, Bosnia-Herzegovina
| | - Tamara Kovacevic-Preradovic
- Faculty of Medicine, Clinical Center of The Republic of Srpska, University of Banja-Luka, Banja-Luka, Bosnia-Herzegovina
| | - Eugenio Picano
- Biomedicine Department, CNR, Institute of Clinical Physiology, Pisa, Italy
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23
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Prognostic Value of Reduced Heart Rate Reserve during Exercise in Hypertrophic Cardiomyopathy. J Clin Med 2021; 10:jcm10071347. [PMID: 33805111 PMCID: PMC8037369 DOI: 10.3390/jcm10071347] [Citation(s) in RCA: 2] [Impact Index Per Article: 0.5] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 02/23/2021] [Revised: 03/15/2021] [Accepted: 03/18/2021] [Indexed: 12/25/2022] Open
Abstract
BACKGROUND Sympathetic dysfunction can be evaluated by heart rate reserve (HRR) with exercise test. OBJECTIVES To determine the value of HRR in predicting outcome of patients with hypertrophic cardiomyopathy (HCM). METHODS We enrolled 917 HCM patients (age = 49 ± 15 years, 516 men) assessed with exercise stress echocardiography (ESE) in 11 centres. ESE modality was semi-supine bicycle in 51 patients (6%), upright bicycle in 476 (52%), and treadmill in 390 (42%). During ESE, we assessed left ventricular outflow tract obstruction (LVOTO), stress-induced new regional wall motion abnormalities (RWMA), and HRR (peak/rest heart rate, HR). By selection, all patients completed the follow-up. Mortality was the predetermined outcome measure Results: During ESE, RWMA occurred in 22 patients (2.4%) and LVOTO (≥50 mmHg) in 281 (30.4%). HRR was 1.90 ± 0.40 (lowest quartile ≤ 1.61, highest quartile > 2.13). Higher resting heart rate (odds ratio 1.027, 95% CI: 1.018-1.036, p < 0.001), older age (odds ratio 1.021, 95% CI: 1.009-1.033, p < 0.001), lower exercise tolerance (mets, odds ratio 0.761, 95% CI: 0.708-0.817, p < 0.001) and resting LVOTO (odds ratio 1.504, 95% CI: 1.043-2.170, p = 0.029) predicted a reduced HRR. During a median follow-up of 89 months (interquartile range: 36-145 months), 90 all-cause deaths occurred. At multivariable analysis, lowest quartile HRR (Hazard ratio 2.354, 95% CI 1.116-4.968 p = 0.025) and RWMA (Hazard ratio 3.279, 95% CI 1.441-7.461 p = 0.004) independently predicted death, in addition to age (Hazard ratio 1.064, 95% CI 1.043-1.085 p < 0.001) and maximal wall thickness (Hazard ratio 1.081, 95% CI 1.037-1.128, p < 0.001). CONCLUSIONS A blunted HRR during ESE predicts survival independently of RWMA in HCM patients.
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24
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Novo G, Santoro C, Manno G, Di Lisi D, Esposito R, Mandoli GE, Evola V, Pastore MC, Sperlongano S, D'Andrea A, Cameli M, Galderisi M. Usefulness of Stress Echocardiography in the Management of Patients Treated with Anticancer Drugs. J Am Soc Echocardiogr 2020; 34:107-116. [PMID: 33223357 DOI: 10.1016/j.echo.2020.10.002] [Citation(s) in RCA: 18] [Impact Index Per Article: 3.6] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 04/14/2020] [Revised: 10/06/2020] [Accepted: 10/06/2020] [Indexed: 12/28/2022]
Abstract
In recent years, the survival of patients with cancer has improved thanks to advances in antineoplastic therapeutic protocols. This has led to an increasing burden of cardiovascular complications related to cancer treatment. Therefore, a new branch of cardiology has been created, "cardio-oncology," with the aims of preventing cardiovascular complications related to antineoplastic treatment, achieving early diagnosis and treatment of any complications, and allowing completion of the expected antineoplastic treatment. Stress echocardiography has a pivotal role in achieving a timely diagnosis of coronary artery disease and thus is the best management approach in this clinical setting. Atherosclerotic processes can be exacerbated by both chemotherapy and chest irradiation in patients with cancer, even several years after anticancer treatment completion. Moreover, stress echocardiography has many other potential applications, such as in the evaluation of subclinical left ventricular dysfunction and contractile reserve in patients treated with anticancer drugs that have the potential to induce myocardial damage, as well as evaluating valve disease. The objective of this review is to delineate the role of stress echocardiography in cardio-oncology.
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Affiliation(s)
- Giuseppina Novo
- Division of Cardiology, Department of Health Promotion, Mother and Child Care, Internal Medicine and Medical Specialties, University Hospital Paolo Giaccone, Palermo, University of Palermo, Palermo, Italy
| | - Ciro Santoro
- Department of Advanced Biomedical Sciences, Federico II University Hospital, Naples, Italy
| | - Girolamo Manno
- Division of Cardiology, Department of Health Promotion, Mother and Child Care, Internal Medicine and Medical Specialties, University Hospital Paolo Giaccone, Palermo, University of Palermo, Palermo, Italy.
| | - Daniela Di Lisi
- Division of Cardiology, Department of Health Promotion, Mother and Child Care, Internal Medicine and Medical Specialties, University Hospital Paolo Giaccone, Palermo, University of Palermo, Palermo, Italy
| | - Roberta Esposito
- Department of Advanced Biomedical Sciences, Federico II University Hospital, Naples, Italy
| | - Giulia Elena Mandoli
- Division of Cardiology, Department of Medical Biotechnologies, University of Siena, Siena, Italy
| | - Vincenzo Evola
- Division of Cardiology, Department of Health Promotion, Mother and Child Care, Internal Medicine and Medical Specialties, University Hospital Paolo Giaccone, Palermo, University of Palermo, Palermo, Italy
| | - Maria Concetta Pastore
- Division of Cardiology, Department of Medical Biotechnologies, University of Siena, Siena, Italy
| | - Simona Sperlongano
- Unit of Cardiology, Department of Translational Medical Sciences, Monaldi Hospital, University of Campania "Luigi Vanvitelli", Naples, Italy
| | - Antonello D'Andrea
- Unit of Cardiology and Intensive Coronary Care, "Umberto I" Hospital, Nocera Inferiore, Salerno, Italy
| | - Matteo Cameli
- Division of Cardiology, Department of Medical Biotechnologies, University of Siena, Siena, Italy
| | - Maurizio Galderisi
- Department of Advanced Biomedical Sciences, Federico II University Hospital, Naples, Italy
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25
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Abstract
The key to understanding hemodynamics in heart failure (HF) is the relation between elevated left ventricular (LV) filling pressure and cardiac output. Some patients show abnormal response to stress in the relationship between LV filling pressure and cardiac output. In patients with preserved diastolic function, cardiac output can be increased without significantly elevated filling pressure during stress. In patients with HF, as long as the Frank-Starling mechanism operates effectively, cardiac output can increase while acquiring elevated filling pressure. In patients with decompensated HF, hemodynamic stress will lead to a much greater elevation in filling pressure and pulmonary venous hypertension.
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26
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Morrone D, Arbucci R, Wierzbowska-Drabik K, Ciampi Q, Peteiro J, Agoston G, Varga A, Camarozano AC, Boshchenko A, Ryabova T, Dekleva M, Simova I, Lowenstein Haber DM, Tesic M, Boskovic N, Djordjevic-Dikic A, Beleslin B, D'Alfonso MG, Mori F, Rodrìguez-Zanella H, Kasprzak JD, Cortigiani L, Lattanzi F, Scali MC, Torres MAR, Daros CB, de Castro E Silva Pretto JL, Gaibazzi N, Zagatina A, Zhuravskaya N, Amor M, Mieles PEV, Merlo PM, Monte I, D'Andrea A, Re F, Di Salvo G, Merli E, Lorenzoni V, De Nes M, Paterni M, Limongelli G, Prota C, Citro R, Colonna P, Villari B, Antonini-Canterin F, Carpeggiani C, Lowenstein J, Picano E. Feasibility and functional correlates of left atrial volume changes during stress echocardiography in chronic coronary syndromes. Int J Cardiovasc Imaging 2020; 37:953-964. [PMID: 33057991 DOI: 10.1007/s10554-020-02071-5] [Citation(s) in RCA: 7] [Impact Index Per Article: 1.4] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 08/27/2020] [Accepted: 10/09/2020] [Indexed: 10/23/2022]
Abstract
An enlarged left atrial volume index (LAVI) at rest mirrors increased LA pressure and/or impairment of LA function. A cardiovascular stress may acutely modify left atrial volume (LAV) within minutes. Aim of this study was to assess the feasibility and functional correlates of LAV-stress echocardiography (SE) Out of 514 subjects referred to 10 quality-controlled labs, LAV-SE was completed in 490 (359 male, age 67 ± 12 years) with suspected or known chronic coronary syndromes (n = 462) or asymptomatic controls (n = 28). The utilized stress was exercise in 177, vasodilator in 167, dobutamine in 146. LAV was measured with the biplane disk summation method. SE was performed with the ABCDE protocol. The intra-observer and inter-observer LAV variability were 5% and 8%, respectively. ∆-LAVI changes (stress-rest) were negatively correlated with resting LAVI (r = - 0.271, p < 0.001) and heart rate reserve (r = -.239, p < 0.001). LAV-dilators were defined as those with stress-rest increase ≥ 6.8 ml/m2, a cutoff derived from a calculated reference change value above the biological, analytical and observer variability of LAVI. LAV dilation occurred in 56 patients (11%), more frequently with exercise (16%) and dipyridamole (13%) compared to dobutamine (4%, p < 0.01). At multivariable logistic regression analysis, B-lines ≥ 2 (OR: 2.586, 95% CI = 1.1293-5.169, p = 0.007) and abnormal contractile reserve (OR: 2.207, 95% CI = 1.111-4.386, p = 0.024) were associated with LAV dilation. In conclusion, LAV-SE is feasible with high success rate and low variability in patients with chronic coronary syndromes. LAV dilation is more likely with reduced left ventricular contractile reserve and pulmonary congestion.
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Affiliation(s)
| | - Rosina Arbucci
- Cardiodiagnosticos, Investigaciones Medicas, Buenos Aires, Argentina
| | | | - Quirino Ciampi
- Cardiology Division, Fatebenefratelli Hospital, Benevento, Italy
| | - Jesus Peteiro
- CHUAC- Complexo Hospitalario Universitario A Coruna- University of A Coruna, La Coruna, Spain
| | - Gergely Agoston
- Institute of Family Medicine, University of Szeged, Szeged, Hungary
| | - Albert Varga
- Institute of Family Medicine, University of Szeged, Szeged, Hungary
| | - Ana Cristina Camarozano
- Hospital de Clinicas UFPR, Medicine Department, Federal University of Paranà, Curitiba, Brazil
| | - Alla Boshchenko
- Cardiology Research Institute, Tomsk National Research Medical Centre of the Russian Academy of Sciences, Tomsk, Russian Federation
| | - Tamara Ryabova
- Cardiology Research Institute, Tomsk National Research Medical Centre of the Russian Academy of Sciences, Tomsk, Russian Federation
| | - Milica Dekleva
- Clinical Cardiology Department, Clinical Hospital Zvezdara, Medical School, University of Belgrade, Belgrade, Serbia
| | - Iana Simova
- Head of Cardiology Department, Acibadem City Clinic Cardiovascular Center, University Hospital, Sofia, Bulgaria
| | | | - Milorad Tesic
- Cardiology Clinic, Clinical Center of Serbia, Medical School, University of Belgrade, Belgrade, Serbia
| | - Nikola Boskovic
- Cardiology Clinic, Clinical Center of Serbia, Medical School, University of Belgrade, Belgrade, Serbia
| | - Ana Djordjevic-Dikic
- Cardiology Clinic, Clinical Center of Serbia, Medical School, University of Belgrade, Belgrade, Serbia
| | - Branko Beleslin
- Cardiology Clinic, Clinical Center of Serbia, Medical School, University of Belgrade, Belgrade, Serbia
| | - Maria Grazia D'Alfonso
- SOD Diagnostica Cardiovascolare, DAI Cardio-Toraco-Vascolare, Azienda Ospedaliera-Universitaria Careggi, Firenze, Italy
| | - Fabio Mori
- SOD Diagnostica Cardiovascolare, DAI Cardio-Toraco-Vascolare, Azienda Ospedaliera-Universitaria Careggi, Firenze, Italy
| | | | | | | | - Fabio Lattanzi
- Cardiothoracic Department, University of Pisa, Pisa, Italy
| | | | - Marco A R Torres
- Hospital de Clinicas de Porto Alegre - Universidade Federal Do Rio Grande Do Sul, Porto Alegre, Brazil
| | | | | | - Nicola Gaibazzi
- Cardiology Department, Parma University Hospital, Parma, Italy
| | - Angela Zagatina
- Cardiology Department, Saint Petersburg State University Clinic, Saint Petersburg State University, St Petersburg, Russian Federation
| | - Nadezhda Zhuravskaya
- Cardiology Department, Saint Petersburg State University Clinic, Saint Petersburg State University, St Petersburg, Russian Federation
| | - Miguel Amor
- Cardiology Department, Ramos Mejia Hospital, Buenos Aires, Argentina
| | | | | | - Ines Monte
- Echocardiography Lab, Cardio-Thorax-Vascular Department, "Policlinico Vittorio Emanuele", Catania University, Catania, Italy
| | | | - Federica Re
- Cardiology Division, Ospedale San Camillo, Rome, Italy
| | - Giovanni Di Salvo
- Cardiology Division, Pediatric Cardiology Department, Brompton Hospital, Imperial College of London, London, UK
| | - Elisa Merli
- Department of Cardiology, Ospedale per gli Infermi, Faenza, Ravenna, Italy
| | | | - Michele De Nes
- Biomedicine Department, Institute of Clinical Physiology, CNR, Pisa, Italy
| | - Marco Paterni
- Biomedicine Department, Institute of Clinical Physiology, CNR, Pisa, Italy
| | | | - Costantina Prota
- Cardiology Division, Fatebenefratelli Hospital, Benevento, Italy
| | - Rodolfo Citro
- Cardiology Department and Echocardiography Lab, University Hospital "San Giovanni Di Dio e Ruggi D'Aragona", Salerno, Italy.,Italian Society of Echocardiography and Cardiovascular Imaging, Rome, Italy
| | - Paolo Colonna
- Italian Society of Echocardiography and Cardiovascular Imaging, Rome, Italy.,Cardiology Hospital, Policlinico University Hospital of Bari, Bari, Italy
| | - Bruno Villari
- Cardiology Division, Fatebenefratelli Hospital, Benevento, Italy
| | - Francesco Antonini-Canterin
- Italian Society of Echocardiography and Cardiovascular Imaging, Rome, Italy.,Cardiac Prevention and Rehabilitation Unit, Highly Specialized Rehabilitation Hospital Motta Di Livenza, Treviso, Italy
| | - Clara Carpeggiani
- Biomedicine Department, Institute of Clinical Physiology, CNR, Pisa, Italy
| | - Jorge Lowenstein
- Cardiodiagnosticos, Investigaciones Medicas, Buenos Aires, Argentina
| | - Eugenio Picano
- Biomedicine Department, Institute of Clinical Physiology, CNR, Pisa, Italy.
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27
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Mandeş L, Roşca M, Ciupercă D, Popescu BA. The role of echocardiography for diagnosis and prognostic stratification in hypertrophic cardiomyopathy. J Echocardiogr 2020; 18:137-148. [PMID: 32301048 PMCID: PMC7473965 DOI: 10.1007/s12574-020-00467-9] [Citation(s) in RCA: 15] [Impact Index Per Article: 3.0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 02/13/2020] [Revised: 03/01/2020] [Accepted: 03/10/2020] [Indexed: 12/15/2022]
Abstract
Hypertrophic cardiomyopathy (HCM) is the most frequent cardiac disease with genetic substrate, affecting about 0.2-0.5% of the population. While most of the patients with HCM have a relatively good prognosis, some are at increased risk of adverse events. Identifying such patients at risk is important for optimal treatment and follow-up. While clinical and electrocardiographic information plays an important role, echocardiography remains the cornerstone in assessing patients with HCM. In this review, we discuss the role of echocardiography in diagnosing HCM, the key features that differentiate HCM from other diseases and the use of echocardiography for risk stratification in this setting (risk of sudden cardiac death, heart failure, atrial fibrillation and stroke). The use of modern echocardiographic techniques (deformation imaging, 3D echocardiography) refines the diagnosis and prognostic assessment of patients with HCM. The echocardiographic data need to be integrated with clinical data and other information, including cardiac magnetic resonance, especially in challenging cases or when there is incomplete information, for the optimal management of these patients.
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Affiliation(s)
- Leonard Mandeş
- University of Medicine and Pharmacy "Carol Davila", Euroecolab, Bucharest, Romania
- Emergency Institute for Cardiovascular Diseases "Prof. Dr. C. C. Iliescu", Şos. Fundeni 258, Sector 2, 022328, Bucharest, Romania
| | - Monica Roşca
- University of Medicine and Pharmacy "Carol Davila", Euroecolab, Bucharest, Romania
- Emergency Institute for Cardiovascular Diseases "Prof. Dr. C. C. Iliescu", Şos. Fundeni 258, Sector 2, 022328, Bucharest, Romania
| | - Daniela Ciupercă
- University of Medicine and Pharmacy "Carol Davila", Euroecolab, Bucharest, Romania
| | - Bogdan A Popescu
- University of Medicine and Pharmacy "Carol Davila", Euroecolab, Bucharest, Romania.
- Emergency Institute for Cardiovascular Diseases "Prof. Dr. C. C. Iliescu", Şos. Fundeni 258, Sector 2, 022328, Bucharest, Romania.
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28
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Scali MC, Zagatina A, Ciampi Q, Cortigiani L, D'Andrea A, Daros CB, Zhuravskaya N, Kasprzak JD, Wierzbowska-Drabik K, Luis de Castro E Silva Pretto J, Djordjevic-Dikic A, Beleslin B, Petrovic M, Boskovic N, Tesic M, Monte I, Simova I, Vladova M, Boshchenko A, Vrublevsky A, Citro R, Amor M, Vargas Mieles PE, Arbucci R, Merlo PM, Lowenstein Haber DM, Dodi C, Rigo F, Gligorova S, Dekleva M, Severino S, Lattanzi F, Morrone D, Galderisi M, Torres MAR, Salustri A, Rodrìguez-Zanella H, Costantino FM, Varga A, Agoston G, Bossone E, Ferrara F, Gaibazzi N, Celutkiene J, Haberka M, Mori F, D'Alfonso MG, Reisenhofer B, Camarozano AC, Miglioranza MH, Szymczyk E, Wejner-Mik P, Wdowiak-Okrojek K, Preradovic-Kovacevic T, Bombardini T, Ostojic M, Nikolic A, Re F, Barbieri A, Di Salvo G, Merli E, Colonna P, Lorenzoni V, De Nes M, Paterni M, Carpeggiani C, Lowenstein J, Picano E. Lung Ultrasound and Pulmonary Congestion During Stress Echocardiography. JACC Cardiovasc Imaging 2020; 13:2085-2095. [PMID: 32682714 DOI: 10.1016/j.jcmg.2020.04.020] [Citation(s) in RCA: 45] [Impact Index Per Article: 9.0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 02/26/2020] [Revised: 04/22/2020] [Accepted: 04/30/2020] [Indexed: 01/02/2023]
Abstract
OBJECTIVES The purpose of this study was to assess the functional and prognostic correlates of B-lines during stress echocardiography (SE). BACKGROUND B-profile detected by lung ultrasound (LUS) is a sign of pulmonary congestion during SE. METHODS The authors prospectively performed transthoracic echocardiography (TTE) and LUS in 2,145 patients referred for exercise (n = 1,012), vasodilator (n = 1,054), or dobutamine (n = 79) SE in 11 certified centers. B-lines were evaluated in a 4-site simplified scan (each site scored from 0: A-lines to 10: white lung for coalescing B-lines). During stress the following were also analyzed: stress-induced new regional wall motion abnormalities in 2 contiguous segments; reduced left ventricular contractile reserve (peak/rest based on force, ≤2.0 for exercise and dobutamine, ≤1.1 for vasodilators); and abnormal coronary flow velocity reserve ≤2.0, assessed by pulsed-wave Doppler sampling in left anterior descending coronary artery and abnormal heart rate reserve (peak/rest heart rate) ≤1.80 for exercise and dobutamine (≤1.22 for vasodilators). All patients completed follow-up. RESULTS According to B-lines at peak stress patients were divided into 4 different groups: group I, absence of stress B-lines (score: 0 to 1; n = 1,389; 64.7%); group II, mild B-lines (score: 2 to 4; n = 428; 20%); group III, moderate B-lines (score: 5 to 9; n = 209; 9.7%) and group IV, severe B-lines (score: ≥10; n = 119; 5.4%). During median follow-up of 15.2 months (interquartile range: 12 to 20 months) there were 38 deaths and 28 nonfatal myocardial infarctions in 64 patients. At multivariable analysis, severe stress B-lines (hazard ratio [HR]: 3.544; 95% confidence interval [CI]: 1.466 to 8.687; p = 0.006), abnormal heart rate reserve (HR: 2.276; 95% CI: 1.215 to 4.262; p = 0.010), abnormal coronary flow velocity reserve (HR: 2.178; 95% CI: 1.059 to 4.479; p = 0.034), and age (HR: 1.031; 95% CI: 1.002 to 1.062; p = 0.037) were independent predictors of death and nonfatal myocardial infarction. CONCLUSIONS Severe stress B-lines predict death and nonfatal myocardial infarction. (Stress Echo 2020-The International Stress Echo Study [SE2020]; NCT03049995).
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Affiliation(s)
- Maria Chiara Scali
- Cardiothoracic Department, University of Pisa, and Nottola Cardiology Division, Montepulciano, Siena, Italy
| | - Angela Zagatina
- Cardiology Department, Saint Petersburg University Clinic, Saint Petersburg, Russian Federation
| | - Quirino Ciampi
- Cardiology Division, Fatebenefratelli Hospital, Benevento, Italy
| | | | - Antonello D'Andrea
- Cardiology Department, Echocardiography Lab and Rehabilitation Unit, Monaldi Hospital, Second University of Naples, Naples, Italy
| | | | - Nadezhda Zhuravskaya
- Cardiology Department, Saint Petersburg University Clinic, Saint Petersburg, Russian Federation
| | | | | | | | - Ana Djordjevic-Dikic
- Cardiology Clinic, Clinical Center of Serbia, Medical School, University of Belgrade, Belgrade, Serbia
| | - Branko Beleslin
- Cardiology Clinic, Clinical Center of Serbia, Medical School, University of Belgrade, Belgrade, Serbia
| | - Marija Petrovic
- Cardiology Clinic, Clinical Center of Serbia, Medical School, University of Belgrade, Belgrade, Serbia
| | - Nikola Boskovic
- Cardiology Clinic, Clinical Center of Serbia, Medical School, University of Belgrade, Belgrade, Serbia
| | - Milorad Tesic
- Cardiology Clinic, Clinical Center of Serbia, Medical School, University of Belgrade, Belgrade, Serbia
| | - Ines Monte
- Cardio-Thorax-Vascular Department, Echocardiography lab, "Policlinico Vittorio Emanuele", Catania University, Catania, Italy
| | - Iana Simova
- Head of Cardiology Department, Acibadem City Clinic Cardiovascular Center, University Hospital, Sofia, Bulgaria
| | - Martina Vladova
- Head of Cardiology Department, Acibadem City Clinic Cardiovascular Center, University Hospital, Sofia, Bulgaria
| | - Alla Boshchenko
- Cardiology Research Institute, Tomsk National Research Medical Centre of the Russian Academy of Sciences, Tomsk, Russian Federation
| | - Alexander Vrublevsky
- Cardiology Research Institute, Tomsk National Research Medical Centre of the Russian Academy of Sciences, Tomsk, Russian Federation
| | - Rodolfo Citro
- Cardiology Department and Echocardiography Lab, University Hospital "San Giovanni di Dio e Ruggi d'Aragona", Salerno, Italy
| | - Miguel Amor
- Cardiology Department, Ramos Mejia Hospital, Buenos Aires, Argentina
| | | | - Rosina Arbucci
- Cardiodiagnosticos, Investigaciones Medicas, Buenos Aires, Argentina
| | | | | | - Claudio Dodi
- Casa di Cura Figlie di San Camillo, Cremona, Italy
| | - Fausto Rigo
- Cardiology Department, Ospedale dell'Angelo Mestre-Venice, Venice, Italy
| | | | - Milica Dekleva
- Clinical Cardiology Department, Clinical Hospital Zvezdara, Medical School, University of Belgrade, Belgrade, Serbia
| | - Sergio Severino
- Cardiology Department, Coronary Care Unit, Monaldi Hospital, Second University of Naples, Naples, Italy
| | - Fabio Lattanzi
- Cardiothoracic Department, University of Pisa, and Nottola Cardiology Division, Montepulciano, Siena, Italy
| | - Doralisa Morrone
- Cardiothoracic Department, University of Pisa, and Nottola Cardiology Division, Montepulciano, Siena, Italy
| | - Maurizio Galderisi
- Department of Advanced Biomedical Sciences, Federico II University Hospital, Naples, Italy
| | - Marco A R Torres
- Hospital de Clinicas de Porto Alegre - Universidade Federal do Rio Grande do Sul, Porto Alegre, Brazil
| | - Alessandro Salustri
- Non-invasive Cardiology, Heart Hospital, Hamad Medical Corporation, Doha, Qatar
| | | | | | - Albert Varga
- Institute of Family Medicine, University of Szeged, Szeged, Hungary
| | - Gergely Agoston
- Institute of Family Medicine, University of Szeged, Szeged, Hungary
| | - Eduardo Bossone
- Azienda Ospedaliera Rilevanza Nazionale A. Cardarelli Hospital, Naples, Italy
| | - Francesco Ferrara
- Azienda Ospedaliera Rilevanza Nazionale A. Cardarelli Hospital, Naples, Italy
| | - Nicola Gaibazzi
- Cardiology Department, Parma University Hospital, Parma, Italy
| | - Jelena Celutkiene
- Centre of Cardiology and Angiology, Clinic of Cardiac and Vascular Diseases, Institute of Clinical Medicine, Faculty of Medicine, Vilnius University, Vilnius, Lithuania
| | - Maciej Haberka
- Department of Cardiology, SHS, Medical University of Silesia, Katowice, Poland
| | - Fabio Mori
- SOD Diagnostica Cardiovascolare, DAI Cardio-Toraco-Vascolare, Azienda Ospedaliera-Universitaria Careggi, Florence, Italy
| | - Maria Grazia D'Alfonso
- SOD Diagnostica Cardiovascolare, DAI Cardio-Toraco-Vascolare, Azienda Ospedaliera-Universitaria Careggi, Florence, Italy
| | - Barbara Reisenhofer
- Cardiology Division, Pontedera-Volterra Hospital, ASL Toscana Nord-Ovest, Italy
| | - Ana Cristina Camarozano
- Hospital de Clinicas UFPR, Medicine Department, Federal University of Paranà, Curitiba, Brazil
| | | | - Ewa Szymczyk
- Chair of Cardiology, Bieganski Hospital, Medical University, Lodz, Poland
| | - Paulina Wejner-Mik
- Chair of Cardiology, Bieganski Hospital, Medical University, Lodz, Poland
| | | | | | - Tonino Bombardini
- School of Medicine, University Clinical Center of The Republic of Srpska, Banja-Luka, Bosnia-Herzegovina
| | - Miodrag Ostojic
- School of Medicine, Institute for Cardiovascular Disease Dedinje, Belgrade, Serbia
| | - Aleksandra Nikolic
- School of Medicine, Institute for Cardiovascular Disease Dedinje, Belgrade, Serbia
| | - Federica Re
- Ospedale San Camillo, Cardiology Division, Rome, Italy
| | - Andrea Barbieri
- Cardiology Division, Policlinico University Hospital of Modena, Modena, Italy
| | - Giovanni Di Salvo
- Pediatric Cardiology Department, Cardiology Division, Brompton Hospital, Imperial College of London, London, United Kingdom
| | - Elisa Merli
- Department of Cardiology, Ospedale per gli Infermi, Faenza, Ravenna, Italy
| | - Paolo Colonna
- Cardiology Hospital, Policlinico University Hospital of Bari, Bari, Italy
| | | | - Michele De Nes
- CNR, Institute of Clinical Physiology, Biomedicine Department, Pisa, Italy
| | - Marco Paterni
- CNR, Institute of Clinical Physiology, Biomedicine Department, Pisa, Italy
| | - Clara Carpeggiani
- CNR, Institute of Clinical Physiology, Biomedicine Department, Pisa, Italy
| | - Jorge Lowenstein
- Cardiodiagnosticos, Investigaciones Medicas, Buenos Aires, Argentina
| | - Eugenio Picano
- CNR, Institute of Clinical Physiology, Biomedicine Department, Pisa, Italy.
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Bombardini T, Zagatina A, Ciampi Q, Cortigiani L, D'Andrea A, Borguezan Daros C, Zhuravskaya N, Kasprzak JD, Wierzbowska-Drabik K, de Castro E Silva Pretto JL, Djordjevic-Dikic A, Beleslin B, Petrovic M, Boskovic N, Tesic M, Monte IP, Simova I, Vladova M, Boshchenko A, Ryabova T, Citro R, Amor M, Vargas Mieles PE, Arbucci R, Dodi C, Rigo F, Gligorova S, Dekleva M, Severino S, Torres MA, Salustri A, Rodrìguez-Zanella H, Costantino FM, Varga A, Agoston G, Bossone E, Ferrara F, Gaibazzi N, Rabia G, Celutkiene J, Haberka M, Mori F, D'Alfonso MG, Reisenhofer B, Camarozano AC, Salamé M, Szymczyk E, Wejner-Mik P, Wdowiak-Okrojek K, Kovacevic Preradovic T, Lattanzi F, Morrone D, Scali MC, Ostojic M, Nikolic A, Re F, Barbieri A, DI Salvo G, Colonna P, DE Nes M, Paterni M, Merlo PM, Lowenstein J, Carpeggiani C, Gregori D, Picano E. Feasibility and value of two-dimensional volumetric stress echocardiography. Minerva Cardiol Angiol 2020; 70:148-159. [PMID: 32657562 DOI: 10.23736/s2724-5683.20.05304-9] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/08/2022]
Abstract
BACKGROUND Stroke volume response during stress is a major determinant of functional status in heart failure and can be measured by two-dimensional (2-D) volumetric stress echocardiography (SE). The present study hypothesis is that SE may identify mechanisms underlying the change in stroke volume by measuring preload reserve through end-diastolic volume (EDV) and left ventricular contractile reserve (LVCR) with systolic blood pressure and end-systolic volume (ESV). METHODS We enrolled 4735 patients (age 63.6±11.3 years, 2800 male) referred to SE for known or suspected coronary artery disease (CAD) and/or heart failure (HF) in 21 SE laboratories in 8 countries. In addition to regional wall motion abnormalities (RWMA), force was measured at rest and peak stress as the ratio of systolic blood pressure by cuff sphygmomanometer/ESV by 2D with Simpson's or linear method. Abnormal values of LVCR (peak/rest) based on force were ≤1.10 for dipyridamole (N.=1992 patients) and adenosine (N.=18); ≤2.0 for exercise (N.=2087) or dobutamine (N.=638). RESULTS Force-based LVCR was obtained in all 4735 patients. Lack of stroke volume increase during stress was due to either abnormal LVCR and/or blunted preload reserve, and 57% of patients with abnormal LVCR nevertheless showed increase in stroke volume. CONCLUSIONS Volumetric SE is highly feasible with all stresses, and more frequently impaired in presence of ischemic RWMA, absence of viability and reduced coronary flow velocity reserve. It identifies an altered stroke volume response due to reduced preload and/or contractile reserve.
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Affiliation(s)
- Tonino Bombardini
- Faculty of Medicine, University of Banja-Luka, Clinical Center of The Republic of Srpska, Banja-Luka, Bosnia-Herzegovina
| | - Angela Zagatina
- Department of Cardiology, Saint Petersburg University Clinic, Saint Petersburg University, Russia
| | - Quirino Ciampi
- Division of Cardiology, Fatebenefratelli Hospital, Benevento, Italy
| | | | - Antonello D'Andrea
- Department of Cardiology, Echocardiography Lab and Rehabilitation Unit, Monaldi Hospital, Second University of Naples, Naples, Italy
| | | | - Nadezhda Zhuravskaya
- Department of Cardiology, Saint Petersburg University Clinic, Saint Petersburg University, Russia
| | | | | | | | - Ana Djordjevic-Dikic
- Cardiology Clinic, Clinical Center of Serbia, Medical School, University of Belgrade, Belgrade, Serbia
| | - Branko Beleslin
- Cardiology Clinic, Clinical Center of Serbia, Medical School, University of Belgrade, Belgrade, Serbia
| | - Marija Petrovic
- Cardiology Clinic, Clinical Center of Serbia, Medical School, University of Belgrade, Belgrade, Serbia
| | - Nikola Boskovic
- Cardiology Clinic, Clinical Center of Serbia, Medical School, University of Belgrade, Belgrade, Serbia
| | - Milorad Tesic
- Cardiology Clinic, Clinical Center of Serbia, Medical School, University of Belgrade, Belgrade, Serbia
| | - Ines P Monte
- Echocardiography Lab, Department of Cardiothoracic and Vascular Medicine, A.O.U. Policlinic Rodolico, University of Catania, Catania, Italy
| | - Iana Simova
- Department of Cardiology, Acibadem City Clinic Cardiovascular Center, University Hospital, Sofia, Bulgaria
| | - Martina Vladova
- Department of Cardiology, Acibadem City Clinic Cardiovascular Center, University Hospital, Sofia, Bulgaria
| | - Alla Boshchenko
- Cardiology Research Institute, Tomsk National Research Medical Centre of the Russian Academy of Sciences, Tomsk, Russia
| | - Tamara Ryabova
- Cardiology Research Institute, Tomsk National Research Medical Centre of the Russian Academy of Sciences, Tomsk, Russia
| | - Rodolfo Citro
- Echocardiography Lab, Department of Cardiology, San Giovanni di Dio e Ruggi d'Aragona University Hospital, Salerno, Italy
| | - Miguel Amor
- Ramos Mejia Hospital, Buenos Aires, Argentina
| | | | - Rosina Arbucci
- Service of Heart Diagnostics, Investigaciones Medicas, Buenos Aires, Argentina
| | - Claudio Dodi
- Casa di Cura Figlie di San Camillo, Cremona, Italy
| | - Fausto Rigo
- Department of Cardiology, Ospedale dell'Angelo, Mestre, Venice, Italy
| | | | | | - Sergio Severino
- Coronary Care Unit, Department of Cardiology, Monaldi Hospital, Second University of Naples, Naples, Italy
| | - Marco A Torres
- Federal University of Rio Grande do Sul, Porto Alegre, Brazil
| | - Alessandro Salustri
- Department of Non-invasive Cardiology, Heart Hospital, Hamad Medical Corporation, Doha, Qatar
| | | | | | - Albert Varga
- Institute of Family Medicine, University of Szeged, Szeged, Hungary
| | - Gergely Agoston
- Institute of Family Medicine, University of Szeged, Szeged, Hungary
| | | | | | - Nicola Gaibazzi
- Department of Cardiology, Parma University Hospital, Parma, Italy
| | - Granit Rabia
- Department of Cardiology, Parma University Hospital, Parma, Italy
| | - Jelena Celutkiene
- Center of Cardiac and Vascular Diseases, Institute of Clinical Medicine, Faculty of Medicine, Vilnius University Hospital, Vilnius, Lithuania
| | - Maciej Haberka
- Department of Cardiology, SHS, Medical University of Silesia, Katowice, Poland
| | - Fabio Mori
- Section of Cardiovascular Diagnostics, Department of Cardiothoracic and Vascular Medicine, Careggi University Hospital, Florence, Italy
| | - Maria G D'Alfonso
- Section of Cardiovascular Diagnostics, Department of Cardiothoracic and Vascular Medicine, Careggi University Hospital, Florence, Italy
| | - Barbara Reisenhofer
- Division of Cardiology, Pontedera-Volterra Hospital, ASL Toscana3 Nord-Ovest, Pontedera, Pisa, Italy
| | - Ana C Camarozano
- Hospital de Clinicas UFPR, Department of Medicine, Federal University of Paranà, Curitiba, Brazil
| | | | - Ewa Szymczyk
- Chair of Cardiology, Bieganski Hospital, Medical University, Lodz, Poland
| | - Paulina Wejner-Mik
- Chair of Cardiology, Bieganski Hospital, Medical University, Lodz, Poland
| | | | - Tamara Kovacevic Preradovic
- Faculty of Medicine, University of Banja-Luka, Clinical Center of The Republic of Srpska, Banja-Luka, Bosnia-Herzegovina
| | - Fabio Lattanzi
- Department of Surgical, Medical, Molecular Pathology and Critical Area Medicine, Section of Cardiovascular Diseases, University of Pisa, Pisa, Italy
| | - Doralisa Morrone
- Department of Surgical, Medical, Molecular Pathology and Critical Area Medicine, Section of Cardiovascular Diseases, University of Pisa, Pisa, Italy
| | - Maria C Scali
- Nottola-Montepulciano Hospital, Division of Cardiology, ASL Toscana Centro, Siena, Italy
| | - Miodrag Ostojic
- School of Medicine, Institute for Cardiovascular Disease Dedinje, Belgrade, Serbia
| | - Aleksandra Nikolic
- School of Medicine, Institute for Cardiovascular Disease Dedinje, Belgrade, Serbia
| | - Federica Re
- San Camillo Hospital, Division of Cardiology, Rome, Italy
| | - Andrea Barbieri
- Division of Cardiology, Policlinico University Hospital, Modena, Italy
| | - Giovanni DI Salvo
- Division of Cardiology, Department of Pediatric Cardiology, Brompton Hospital, Imperial College of London, London, UK
| | - Paolo Colonna
- Cardiology Hospital, Policlinico University Hospital, Bari, Italy
| | - Michele DE Nes
- Department of Biomedicine, Institute of Clinical Physiology, National Research Council (CNR), Pisa, Italy
| | - Marco Paterni
- Department of Biomedicine, Institute of Clinical Physiology, National Research Council (CNR), Pisa, Italy
| | - Pablo M Merlo
- Service of Heart Diagnostics, Investigaciones Medicas, Buenos Aires, Argentina
| | - Jorge Lowenstein
- Service of Heart Diagnostics, Investigaciones Medicas, Buenos Aires, Argentina
| | - Clara Carpeggiani
- Department of Biomedicine, Institute of Clinical Physiology, National Research Council (CNR), Pisa, Italy
| | - Dario Gregori
- Biostatistics, Epidemiology and Public Health Unit, Padua University, Padua, Italy
| | - Eugenio Picano
- Department of Biomedicine, Institute of Clinical Physiology, National Research Council (CNR), Pisa, Italy -
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30
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Wierzbowska-Drabik K, Kasprzak JD, D Alto M, Ágoston G, Varga A, Ferrara F, Amor M, Ciampi Q, Bossone E, Picano E. Reduced pulmonary vascular reserve during stress echocardiography in confirmed pulmonary hypertension and patients at risk of overt pulmonary hypertension. Int J Cardiovasc Imaging 2020; 36:1831-1843. [PMID: 32462450 PMCID: PMC7497494 DOI: 10.1007/s10554-020-01897-3] [Citation(s) in RCA: 1] [Impact Index Per Article: 0.2] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 04/10/2020] [Accepted: 05/21/2020] [Indexed: 12/19/2022]
Abstract
Noninvasive estimation of systolic pulmonary artery pressure (SPAP) during exercise stress echocardiography (ESE) is recommended for pulmonary hemodynamics evaluation but remains flow-dependent. Our aim was to assess the feasibility of pulmonary vascular reserve index (PVRI) estimation during ESE combining SPAP with cardiac output (CO) or exercise-time and compare its value in three group of patients: with invasively confirmed pulmonary hypertension (PH), at risk of PH development (PH risk) mainly with systemic sclerosis and in controls (C) without clinical risk factors for PH, age-matched with PH risk patients. We performed semisupine ESE in 171 subjects: 31 PH, 61 PH at risk and 50 controls as well as in 29 young, healthy normals. Rest and stress assessment included: tricuspid regurgitant flow velocity (TRV), pulmonary acceleration time (ACT), CO (Doppler-estimated). SPAP was calculated from TRV or ACT when TRV was not available. We estimated PVRI based on CO (peak CO/SPAP*0.1) or exercise-time (ESE time/SPAP*0.1). During stress, TRV was measurable in 44% patients ACT in 77%, either one in 95%. PVRI was feasible in 65% subjects with CO and 95% with exercise-time (p < 0.0001). PVRI was lower in PH compared to controls both for CO-based PVRI (group 1 = 1.0 ± 0.95 vs group 3 = 4.28 ± 2.3, p < 0.0001) or time-based PVRI estimation (0.66 ± 0.39 vs 3.95 ± 2.26, p < 0.0001). The proposed criteria for PH detection were for CO-based PVRI ≤ 1.29 and ESE-time based PVRI ≤ 1.0 and for PH risk ≤ 1.9 and ≤ 1.7 respectively. Noninvasive estimation of PVRI can be obtained in near all patients during ESE, without contrast administration, integrating TRV with ACT for SPAP assessment and using exercise time as a proxy of CO. These indices allow for comparison of pulmonary vascular dynamics in patients with varied exercise tolerance and clinical status.
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Affiliation(s)
| | - Jarosław D Kasprzak
- I Department and Chair of Cardiology, Medical University of Lodz, Bieganski Hospital, Lodz, Poland
| | - Michele D Alto
- Department of Cardiology, University "L. Vanvitelli"- AORN dei Colli - Monaldi Hospital, Naples, Italy
| | - Gergely Ágoston
- Department of Family Medicine, University of Szeged, Tisza Lajos krt. 109, Szeged, 6725, Hungary
| | - Albert Varga
- Department of Family Medicine, University of Szeged, Tisza Lajos krt. 109, Szeged, 6725, Hungary
| | - Francesco Ferrara
- Cardiology Division, Heart Department, University Hospital of Salerno, "Cava de' Tirreni and Amalfi Coast" Hospital, Salerno, Italy
| | - Miguel Amor
- Cardiology Department, Ramos Mejia Hospital, Buenos Aires, Argentina
| | - Quirino Ciampi
- Division of Cardiology, Fatebenefratelli Hospital, Benevento, Italy
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31
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Cortigiani L, Ciampi Q, Carpeggiani C, Bovenzi F, Picano E. Prognostic value of heart rate reserve is additive to coronary flow velocity reserve during dipyridamole stress echocardiography. Arch Cardiovasc Dis 2020; 113:244-251. [PMID: 32241716 DOI: 10.1016/j.acvd.2020.01.005] [Citation(s) in RCA: 4] [Impact Index Per Article: 0.8] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 09/24/2019] [Revised: 11/06/2019] [Accepted: 01/08/2020] [Indexed: 02/07/2023]
Abstract
BACKGROUND During dipyridamole stress echocardiography (SE), a blunted heart rate reserve (HRR) is a prognostically unfavourable sign of cardiac autonomic dysfunction. AIM To assess the prognostic meaning of HRR and coronary flow velocity reserve (CFVR). METHODS The study group comprised 2149 patients (1236 men; mean age 66±12 years) with suspected (n=1280) or known (n=869) coronary artery disease and without inducible regional wall motion abnormalities (RWMA) during dipyridamole SE (0.84mg/kg in 6min). We assessed CFVR of the left anterior descending artery with pulsed-wave Doppler as the ratio between hyperaemic peak and basal peak diastolic flow velocities (abnormal value≤2.0). HRR was calculated as the peak/resting ratio of heart rate from a 12-lead electrocardiogram (abnormal value≤1.22). All patients were followed up. RESULTS CFVR and HRR were abnormal in 520 (24%) and 670 (31%) patients, respectively. There was a positive linear correlation between CFVR and HRR (r=0.30; P<0.0001). During a median follow-up of 22 months (1st quartile 12 months, 3rd quartile 35 months), 75 (6%) patients died. The annual mortality was 1.6% in the overall population, 0.5% in the 1224 (57%) patients with normal CFVR and HRR, 1.7% in the 405 (19%) patients with abnormal HRR only, 3.6% in the 255 (12%) patients with abnormal CFVR only, and 6.2% in the 265 (12%) patients with abnormal CFVR and HRR. CONCLUSIONS HRR is weakly related to CFVR, and a blunted HRR usefully complements RWMA and CFVR for prediction of outcome with dipyridamole SE. The patient without inducible RWMA is still at intermediate risk, but the risk is low with concomitant preserved CFVR, and very low with concomitant normal HRR.
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Affiliation(s)
| | - Quirino Ciampi
- Cardiology Division, Fatebenefratelli Hospital, 82100 Benevento, Italy
| | | | | | - Eugenio Picano
- CNR Institute of Clinical Physiology, 56124 Pisa, Italy.
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32
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Cortigiani L, Bovenzi F, Picano E. Clinical, hemodynamic, and functional variables affecting success rate of coronary flow velocity reserve detection during vasodilator stress echocardiography. Echocardiography 2020; 37:520-527. [DOI: 10.1111/echo.14632] [Citation(s) in RCA: 1] [Impact Index Per Article: 0.2] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 01/28/2020] [Revised: 02/27/2020] [Accepted: 03/01/2020] [Indexed: 02/01/2023] Open
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33
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Kossaify A, Bassil E, Kossaify M. Stress Echocardiography: Concept and Criteria, Structure and Steps, Obstacles and Outcomes, Focused Update and Review. Cardiol Res 2020; 11:89-96. [PMID: 32256915 PMCID: PMC7092766 DOI: 10.14740/cr851] [Citation(s) in RCA: 4] [Impact Index Per Article: 0.8] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 02/26/2019] [Accepted: 01/28/2020] [Indexed: 01/06/2023] Open
Abstract
Stress echocardiography (SEC) is a technique established more than 35 years ago; however, it is still poorly implemented in many countries and institutions, and this reluctance may be related to many obstacles such as operator skills, lack of awareness or institutional policy. Stress echo was initially used for assessing coronary artery disease (CAD), with respect to myocardial viability, using wall motion response; however, current use of stress echo extends beyond CAD, such as valvular heart disease and diastolic stress test. Dobutamine is a commonly used agent when pharmaceutical approach is implemented. With regard to CAD, there are four stress responses: normal, ischemic, viable and necrotic. A low dose dobutamine protocol is recommended in patients with baseline wall motion abnormalities, and a very low dose dobutamine is used in low flow low gradient aortic stenosis in order to check the flow and contractility reserve. Of note, respecting protocols, indications and contraindications are important to avoid or minimize risks of complications during the procedure. This article presents a focused update and review regarding SEC, along with an overview of the different indications, structures and steps, and obstacles and outcomes; also the article aims to highlight more awareness and sensitization on this useful technique.
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Affiliation(s)
- Antoine Kossaify
- Cardiology Division, Echocardiology Unit, University Hospital Notre Dame des Secours, PO Box 3, Byblos, Lebanon.,Holy Spirit University of Kaslik (USEK), School of Medicine, St Charbel Street, Byblos, Lebanon
| | - Elie Bassil
- Cardiology Division, Echocardiology Unit, University Hospital Notre Dame des Secours, PO Box 3, Byblos, Lebanon.,Holy Spirit University of Kaslik (USEK), School of Medicine, St Charbel Street, Byblos, Lebanon
| | - Mikhael Kossaify
- Cardiology Division, Echocardiology Unit, University Hospital Notre Dame des Secours, PO Box 3, Byblos, Lebanon.,Holy Spirit University of Kaslik (USEK), School of Medicine, St Charbel Street, Byblos, Lebanon
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34
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Zagatina A, Zhuravskaya N, Shmatov D, Ciampi Q, Carpeggiani C, Picano E. Exercise stress echocardiography with ABCDE protocol in unexplained dyspnoea. Int J Cardiovasc Imaging 2020; 36:823-831. [DOI: 10.1007/s10554-020-01789-6] [Citation(s) in RCA: 7] [Impact Index Per Article: 1.4] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 11/28/2019] [Accepted: 02/01/2020] [Indexed: 02/07/2023]
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35
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Arystan AZ, Khamzina YT, Benberin VV, Fettser DV, Belenkov YN. [Lung Ultrasound: new Opportunities for a Cardiologist]. KARDIOLOGIIA 2020; 60:81-92. [PMID: 32245358 DOI: 10.18087/cardio.2020.1.n617] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Subscribe] [Scholar Register] [Received: 05/04/2019] [Revised: 08/13/2019] [Accepted: 09/17/2019] [Indexed: 06/11/2023]
Abstract
This review focused on ultrasound examination of lungs, a useful complement to transthoracic echocardiography (EchoCG), which is superior to chest X-ray in the diagnostic value. The lung acoustic window always remains open and allows obtaining high-quality images in most cases. For a cardiologist, the major points of the method application are determination of pleural effusion and lung congestion. This method has a number of advantages: it is time-saving; cost-effective; portable and accessible; can be used in a real-time mode; not associated with radiation; reproducible; and highly informative. The ultrasound finding of wet lungs would indicate threatening, acute cardiac decompensation long before appearance of clinical, auscultative, and radiological signs of lung congestion. Modern EchoCG should include examination of the heart and lungs as a part of a single, integrative ultrasound examination.
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Affiliation(s)
- A Z Arystan
- Medical Centre Hospital of the President's Affairs Administration of the Republic of Kazakhstan
| | - Y T Khamzina
- Medical Centre Hospital of the President's Affairs Administration of the Republic of Kazakhstan
| | - V V Benberin
- Medical Centre Hospital of the President's Affairs Administration of the Republic of Kazakhstan
| | - D V Fettser
- Municipal Clinical Hospital #52 at the Health Care Department of Moscow City
| | - Y N Belenkov
- I.M. Sechenov First Moscow State Medical University
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36
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Čelutkienė J, Lainscak M, Anderson L, Gayat E, Grapsa J, Harjola VP, Manka R, Nihoyannopoulos P, Filardi PP, Vrettou R, Anker SD, Filippatos G, Mebazaa A, Metra M, Piepoli M, Ruschitzka F, Zamorano JL, Rosano G, Seferovic P. Imaging in patients with suspected acute heart failure: timeline approach position statement on behalf of the Heart Failure Association of the European Society of Cardiology. Eur J Heart Fail 2019; 22:181-195. [PMID: 31815347 DOI: 10.1002/ejhf.1678] [Citation(s) in RCA: 35] [Impact Index Per Article: 5.8] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 03/30/2019] [Revised: 10/15/2019] [Accepted: 10/24/2019] [Indexed: 12/28/2022] Open
Abstract
Acute heart failure is one of the main diagnostic and therapeutic challenges in clinical practice due to a non-specific clinical manifestation and the urgent need for timely and tailored management at the same time. In this position statement, the Heart Failure Association aims to systematize the use of various imaging methods in accordance with the timeline of acute heart failure care proposed in the recent guidelines of the European Society of Cardiology. During the first hours of admission the point-of-care focused cardiac and lung ultrasound examination is an invaluable tool for rapid differential diagnosis of acute dyspnoea, which is highly feasible and relatively easy to learn. Several portable and stationary imaging modalities are being increasingly used for the evaluation of cardiac structure and function, haemodynamic and volume status, precipitating myocardial ischaemia or valvular abnormalities, and systemic and pulmonary congestion. This paper emphasizes the central role of the full echocardiographic examination in the identification of heart failure aetiology, severity of cardiac dysfunction, indications for specific heart failure therapy, and risk stratification. Correct evaluation of cardiac filling pressures and accurate prognostication may help to prevent unscheduled short-term readmission. Alternative advanced imaging modalities should be considered to assist patient management in the pre- and post-discharge phase, including cardiac magnetic resonance, computed tomography, nuclear studies, and coronary angiography. The Heart Failure Association addresses this paper to the wide spectrum of acute care and heart failure specialists, highlighting the value of all available imaging techniques at specific stages and in common clinical scenarios of acute heart failure.
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Affiliation(s)
- Jelena Čelutkienė
- Clinic of Cardiac and Vascular Diseases, Institute of Clinical Medicine, Faculty of Medicine, Vilnius University, Vilnius, Lithuania.,State Research Institute Centre For Innovative Medicine, Vilnius, Lithuania
| | - Mitja Lainscak
- Department of Cardiology and Department of Research and Education, General Hospital Celje, Celje, Slovenia.,Faculty of Medicine, University of Ljubljana, Ljubljana, Slovenia
| | - Lisa Anderson
- Department of Cardiology, Royal Brompton Hospital, Imperial College London, London, UK
| | - Etienne Gayat
- Department of Anesthesiology, Burn and Critical Care Medicine, AP-HP, Saint Louis and Lariboisière University Hospitals, Paris, France
| | - Julia Grapsa
- Barts Heart Center, St Bartholomew's Hospital, London, UK
| | - Veli-Pekka Harjola
- Emergency Medicine, Helsinki University, Helsinki, Finland.,Department of Emergency Medicine and Services, Helsinki University Hospital, Helsinki, Finland
| | - Robert Manka
- Institute of Diagnostic and Interventional Radiology, University Hospital Zurich, Zurich, Switzerland.,Department of Cardiology, University Heart Center Zurich, Zurich, Switzerland
| | - Petros Nihoyannopoulos
- Unit of Inherited Cardiovascular Diseases/Heart Center of the Young and Athletes, First Department of Cardiology, Hippokration General Hospital, National and Kapodistrian University of Athens, Greece; National Heart and Lung Institute, Imperial College London, London, UK
| | | | - Rosa Vrettou
- Department of Clinical Cardiology, Attikon University Hospital, National and Kapodistrian University of Athens, Athens, Greece
| | - Stefan D Anker
- Department of Cardiology (CVK); and Berlin-Brandenburg Center for Regenerative Therapies (BCRT); German Centre for Cardiovascular Research (DZHK) Partner Site Berlin, Charité Universitätsmedizin Berlin, Berlin, Germany
| | - Gerasimos Filippatos
- Department of Clinical Cardiology, Attikon University Hospital, National and Kapodistrian University of Athens, Athens, Greece
| | - Alexandre Mebazaa
- Department of Anesthesiology, Burn and Critical Care Medicine, AP-HP, Saint Louis and Lariboisière University Hospitals, Paris, France
| | - Marco Metra
- Cardiology, Department of Medical and Surgical Specialties, Radiological Sciences, and Public Health, University of Brescia, Brescia, Italy
| | - Massimo Piepoli
- Cardiac Department, Guglielmo da Saliceto Polichirurgico Hospital AUSL Piacenza, Piacenza, Italy
| | - Frank Ruschitzka
- Department of Cardiology, Heart Failure Clinic and Transplantation, University Heart Center Zurich, Zurich, Switzerland
| | | | - Giuseppe Rosano
- Clinical Academic Group, St George's Hospitals NHS Trust, London, UK; Department of Medical Sciences, IRCCS San Raffaele, Rome, Italy
| | - Petar Seferovic
- Faculty of Medicine, University of Belgrade, Belgrade, Serbia
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37
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Picano E, Scali MC, Ciampi Q, Lichtenstein D. Lung Ultrasound for the Cardiologist. JACC Cardiovasc Imaging 2019; 11:1692-1705. [PMID: 30409330 DOI: 10.1016/j.jcmg.2018.06.023] [Citation(s) in RCA: 133] [Impact Index Per Article: 22.2] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 01/25/2018] [Revised: 05/25/2018] [Accepted: 06/19/2018] [Indexed: 02/06/2023]
Abstract
For a cardiologist, lung ultrasound is an add-on to transthoracic echocardiography, just as lung auscultation is part of a cardiac physical examination. A cardiac 3.5- to 5.0-MHz transducer is generally suitable because the small footprint makes it ideal for scanning intercostal spaces. The image quality is often adequate, and the lung acoustic window is always patent. The cumulative increase in imaging time is <1 min for the 2 main applications targeted on pleural water (pleural effusion) and lung water (pulmonary congestion as multiple B-lines). In these settings, lung ultrasound outperforms the diagnostic accuracy of the chest radiograph, with a low-cost, portable, real-time, radiation-free method. A "wet lung" detected by lung ultrasound predicts impending acute heart failure decompensation and may trigger lung decongestion therapy. The doctors of tomorrow may still listen with a stethoscope to their patient's lung, but they will certainly be seeing it with ultrasound.
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Affiliation(s)
| | | | - Quirino Ciampi
- Cardiology Division, Fatebenefratelli Hospital, Benevento, Italy
| | - Daniel Lichtenstein
- Medical Intensive Care Unit, Ambroise-Paré Hospital, Paris-West University, Boulogne, France
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38
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Ghiselli L, Marchi A, Fumagalli C, Maurizi N, Oddo A, Pieri F, Girolami F, Rowin E, Mazzarotto F, Cicoira M, Ribichini F, Arretini A, Targetti M, Passantino S, Cecchi F, Marchionni N, Maron M, Mori F, Olivotto I. Sex-related differences in exercise performance and outcome of patients with hypertrophic cardiomyopathy. Eur J Prev Cardiol 2019; 27:1821-1831. [PMID: 31698967 DOI: 10.1177/2047487319886961] [Citation(s) in RCA: 10] [Impact Index Per Article: 1.7] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Indexed: 11/17/2022]
Abstract
AIMS Exercise performance is known to predict outcome in hypertrophic cardiomyopathy (HCM), but whether sex-related differences exist is unresolved. We explored whether functional impairment, assessed by exercise echocardiography, has comparable predictive accuracy in females and males with HCM. METHODS We retrospectively evaluated 292 HCM patients (46 ± 16 years, 72% males), consecutively referred for exercise echocardiography; 242 were followed for 5.9 ± 4.2 years. RESULTS Peak exercise capacity was 6.5 ± 1.6 metabolic equivalents (METs). Sixty patients (21%) showed impaired exercise capacity (≤5 METs). Exercise performance was reduced in females, compared with males (5.6 ± 1.6 vs 6.9 ± 1.5 METs, p < 0.001; peak METs ≤ 5 in 40% vs 13%, p < 0.001), largely driven by a worse performance in women >50 years of age. At multivariable analysis, female sex was independently associated with impaired exercise capacity (odds ratio: 4.67; 95% confidence interval (CI): 1.83-11.90; p = 0.001). During follow-up, 24 patients (10%) met the primary endpoint (a combination of cardiac death, heart failure requiring hospitalization, sustained ventricular tachycardia, appropriate implantable cardioverter defibrillator discharge, resuscitated sudden cardiac death and cardioembolic stroke). Event-free survival was reduced in females (p = 0.035 vs males). Peak METs were inversely related to outcome in males (hazard ratio (HR) per unit increase: 0.57; 95% CI: 0.39-0.84; p = 0.004) but not in females (HR: 1.22; 95% CI: 0.66-2.24; p = 0.53). CONCLUSIONS Female patients with HCM showed significant age-related impairment in functional capacity compared with males, particularly evident in post-menopausal age groups. While women were at greater risk of HCM-related complications and death, impaired exercise capacity predicted adverse outcome only in men. These findings suggest the need for sex-specific management strategies in HCM.
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Affiliation(s)
- Luca Ghiselli
- Division of Cardiology, IRCCS Sacro Cuore Don Calabria Hospital, Negrar, Verona, Italy.,Department of Medicine, Section of Cardiology, University of Verona, Verona, Italy.,Cardiomyopathy Unit, Careggi University Hospital, Florence, Italy
| | - Alberto Marchi
- Cardiomyopathy Unit, Careggi University Hospital, Florence, Italy
| | - Carlo Fumagalli
- Cardiomyopathy Unit, Careggi University Hospital, Florence, Italy
| | - Niccolò Maurizi
- Cardiomyopathy Unit, Careggi University Hospital, Florence, Italy
| | - Andrea Oddo
- Cardiology Department, Careggi University Hospital, Florence, Italy
| | - Francesco Pieri
- Cardiology Department, Careggi University Hospital, Florence, Italy
| | - Francesca Girolami
- Department of Pediatric Cardiology, Meyer Children's Hospital, Florence, Italy
| | - Ethan Rowin
- Hypertrophic Cardiomyopathy Center, Division of Cardiology, Tufts Medical Center, Boston, MA, USA
| | - Francesco Mazzarotto
- Cardiomyopathy Unit, Careggi University Hospital, Florence, Italy.,Department of Clinical and Experimental Medicine, University of Florence, Florence, Italy.,Cardiovascular Research Centre, Royal Brompton and Harefield NHS Foundation Trust and Imperial College London, London, UK
| | | | - Flavio Ribichini
- Department of Medicine, Section of Cardiology, University of Verona, Verona, Italy
| | - Anna Arretini
- Cardiomyopathy Unit, Careggi University Hospital, Florence, Italy
| | - Mattia Targetti
- Cardiomyopathy Unit, Careggi University Hospital, Florence, Italy
| | - Silvia Passantino
- Department of Pediatric Cardiology, Meyer Children's Hospital, Florence, Italy
| | - Franco Cecchi
- Department of Cardiology, San Luca Hospital, Istituto Auxologico Italiano, Milano, Italy
| | - Niccolò Marchionni
- Department of Clinical and Experimental Medicine, University of Florence, Florence, Italy
| | - Martin Maron
- Hypertrophic Cardiomyopathy Center, Division of Cardiology, Tufts Medical Center, Boston, MA, USA
| | - Fabio Mori
- Cardiology Department, Careggi University Hospital, Florence, Italy
| | - Iacopo Olivotto
- Cardiomyopathy Unit, Careggi University Hospital, Florence, Italy
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39
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Ciampi Q, Zagatina A, Cortigiani L, Gaibazzi N, Borguezan Daros C, Zhuravskaya N, Wierzbowska-Drabik K, Kasprzak JD, de Castro e Silva Pretto JL, D'Andrea A, Djordjevic-Dikic A, Monte I, Simova I, Boshchenko A, Citro R, Amor M, Merlo PM, Dodi C, Rigo F, Gligorova S, Dekleva M, Severino S, Lattanzi F, Scali MC, Vrublevsky A, Torres MA, Salustri A, Rodrìguez-Zanella H, Costantino FM, Varga A, Bossone E, Colonna P, De Nes M, Paterni M, Carpeggiani C, Lowenstein J, Gregori D, Picano E. Functional, Anatomical, and Prognostic Correlates of Coronary Flow Velocity Reserve During Stress Echocardiography. J Am Coll Cardiol 2019; 74:2278-2291. [DOI: 10.1016/j.jacc.2019.08.1046] [Citation(s) in RCA: 39] [Impact Index Per Article: 6.5] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 01/17/2019] [Revised: 08/08/2019] [Accepted: 08/12/2019] [Indexed: 02/07/2023]
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40
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Mulvagh SL, Mokhtar AT. Coronary Flow Velocity Reserve in Stress Echocardiography. J Am Coll Cardiol 2019; 74:2292-2294. [DOI: 10.1016/j.jacc.2019.08.1042] [Citation(s) in RCA: 5] [Impact Index Per Article: 0.8] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 08/22/2019] [Accepted: 08/26/2019] [Indexed: 12/15/2022]
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41
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Cortigiani L, Ciampi Q, Lombardo A, Rigo F, Bovenzi F, Picano E. Age- and Gender-Specific Prognostic Cutoff Values of Coronary Flow Velocity Reserve in Vasodilator Stress Echocardiography. J Am Soc Echocardiogr 2019; 32:1307-1317. [DOI: 10.1016/j.echo.2019.05.020] [Citation(s) in RCA: 11] [Impact Index Per Article: 1.8] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 04/02/2019] [Revised: 05/18/2019] [Accepted: 05/25/2019] [Indexed: 01/09/2023]
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42
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Cortigiani L, Carpeggiani C, Landi P, Raciti M, Bovenzi F, Picano E. Usefulness of Blunted Heart Rate Reserve as an Imaging-Independent Prognostic Predictor During Dipyridamole Stress Echocardiography. Am J Cardiol 2019; 124:972-977. [PMID: 31324358 DOI: 10.1016/j.amjcard.2019.06.017] [Citation(s) in RCA: 22] [Impact Index Per Article: 3.7] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 05/03/2019] [Revised: 06/08/2019] [Accepted: 06/12/2019] [Indexed: 01/06/2023]
Abstract
A blunted heart rate (HR) response during dipyridamole myocardial perfusion imaging has been associated with a poor outcome. To assess the value of HR response in patients who underwent high-dose dipyridamole stress echocardiography (SE), we retrospectively selected a sample of 3,059 patients (none with pacemakers or atrial fibrillation; mean age 66 ± 11 years). All underwent high-dose (0.84 mg/kg) dipyridamole SE for evaluation of known or suspected coronary artery disease and/or heart failure in 2 laboratories of Pisa-IFC and Lucca. HR (with 12-lead ECG) was obtained each minute and recorded at rest and peak stress. HR reserve (HRR) was calculated as the peak/rest HR ratio. All patients were followed up. Patients were randomly divided into the modeling and validation group of equal size. During a median follow-up time of 1,004 days, 321 hard events occurred: 231 deaths and 90 nonfatal myocardial infarctions. HRR ≤ 1.22 identified by receiver operating characteristic analysis in the modeling group was an independent predictor of infarction-free survival in the modeling (hazard ratio 1.83, 95% confidence interval [CI] 1.30 to 2.60, p = 0.001), in the validation (hazard ratio 1.47, 95% CI 1.08 to 2.01, p = 0.02), and in the overall group (hazard ratio 1.60, 95% CI 1.27 to 2.02, p <0.0001), either off- or on-β blockers. Five-year event rate increased from 8% to 24 % from the highest (≥1.41) to the lowest (≤1.14) HRR quartile. In conclusion, blunted HRR is a useful nonimaging predictor of adverse events during high-dose dipyridamole SE, independent of inducible ischemia, and beta-blocker therapy.
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Affiliation(s)
| | | | | | - Mauro Raciti
- CNR Institute of Clinical Physiology, Pisa, Italy
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43
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Clinical application of stress echocardiography for valvular heart disease. J Med Ultrason (2001) 2019; 47:81-89. [PMID: 31289972 DOI: 10.1007/s10396-019-00958-y] [Citation(s) in RCA: 2] [Impact Index Per Article: 0.3] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 05/06/2019] [Accepted: 06/05/2019] [Indexed: 10/26/2022]
Abstract
Stress echocardiography is widely used to assess several cardiovascular diseases, including ischemic heart disease, valvular heart disease (VHD), heart failure, congenital heart disease, and pulmonary hypertension. In valvular heart disease with asymptomatic severe or symptomatic non-severe status, stress echocardiography plays a central role in the management. As of 2017, the updated American College of Cardiology/American Heart Association and European Society of Cardiology/European Association for Cardio-Thoracic Surgery VHD guidelines recommended stress testing to (1) confirm symptoms and (2) evaluate the hemodynamic response to exercise. In patients with undetermined VHD severity in the presence of low-flow status, it can also be helpful to determine whether the VHD is severe based on flow-dependent changes in response to stress. The clinical indications of stress echocardiography in VHD have expanded with growing evidence for prognosis and being an early marker for interventions. As a result, demand has increased in major cardiology societies for the standardization of stress echocardiography in VHD. Echocardiographic centers should be aware of the clinical potential of stress echocardiography to ensure its optimal application and performance in VHD. This article reviews the clinical application of stress echocardiography, including dobutamine, semisupine bicycle, treadmill, and leg-positive pressure for VHD patient management, and focuses on the current consensus regarding the use of stress echocardiography in VHD. Stress echocardiography is safe and should be encouraged, especially in heart valve clinics, to understand the complex mechanism in asymptomatic patients.
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44
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Cortigiani L, Urluescu ML, Coltelli M, Carpeggiani C, Bovenzi F, Picano E. Apparent Declining Prognostic Value of a Negative Stress Echocardiography Based on Regional Wall Motion Abnormalities in Patients With Normal Resting Left Ventricular Function Due to the Changing Referral Profile of the Population Under Study. Circ Cardiovasc Imaging 2019; 12:e008564. [PMID: 31167561 DOI: 10.1161/circimaging.118.008564] [Citation(s) in RCA: 13] [Impact Index Per Article: 2.2] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Indexed: 12/13/2022]
Abstract
Background Cardiology guidelines identify the low-risk response during stress echocardiography as the absence of regional wall motion abnormalities. Methods From 1983 to 2016, we enrolled 5817 patients (age 63±12 years; 2830 males) with suspected coronary artery disease, normal regional, and global left ventricular function at rest and during stress (exercise in 692, dipyridamole in 4291, and dobutamine in 834). Based on timing of enrollment, 4 groups were identified in chronological order of recruitment: years 1983 to 1989, group 1 (n=211); years 1990 to 1999, group 2 (n=1491); years 2000 to 2009, group 3 (n=3285); and years 2010 to 2016, group 4 (n=830). Results There were 240 (4%) events (119 deaths and 121 infarctions) in the follow-up. At 1-year follow-up, the event rate was 0.5% (95% CI, 0.05-0.95), 1.5% (95% CI, -1.18 to 1.82), 1.9% (95% CI, 1.63-2.17), and 1.7% (95% CI, 1.01-2.39; χ2, 9.0; P=0.03) in groups 1 to 4, respectively. At multivariable Cox analysis, independent predictors of future events were age (hazard ratio (HR), 1.05; 95% CI, 1.04-1.07; P<0.0001), male sex (HR, 1.57; 95% CI, 1.20-2.04; P=0.001), diabetes mellitus (HR, 1.78; 95% CI, 1.34-2.37; P<0.0001), smoking habit (HR, 1.40; 95% CI, 1.05-1.85; P=0.02), and ongoing anti-ischemic therapy (HR, 1.50; 95% CI, 1.15-1.97; P=0.003) Conclusions Over the past 3 decades, we observed a progressive decline in the prognostic value of a negative test based on regional wall motion abnormalities, likely reflecting both an increase in risk in patients, as well as a potential decrease in test performance due to concomitant anti-ischemic therapy.
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Affiliation(s)
- Lauro Cortigiani
- Cardiology Division, San Luca Hospital, Lucca, Italy (L.C., F.B.)
| | - Mădălina-Loredana Urluescu
- Invasive and Noninvasive Research Center for Cardiac and Vascular Pathology in Adult (CVASIC), "Lucian Blaga" University of Sibiu, Romania (M.-L.U.)
| | - Maico Coltelli
- Dipartimento tecnologie informatiche ESTAR Toscana, Pisa (M.C.)
| | - Clara Carpeggiani
- Institute of Clinical Physiology, Biomedicine Department, National Research Council, Pisa, Italy (C.C., E.P.)
| | | | - Eugenio Picano
- Institute of Clinical Physiology, Biomedicine Department, National Research Council, Pisa, Italy (C.C., E.P.)
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45
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Scali MC, Zagatina A, Ciampi Q, Cortigiani L, D'Andrea A, Djordjevic-Dikic A, Merlo PM, Lattanzi F, Simova I, Monte I, Dodi C, Kasprzak JD, Galderisi M, Boshchenko A, Rigo F, Varga A, Dekleva M, Re F, de Castro e Silva Pretto JL, Zhuravaskaya N, Wierzbowska-Drabik K, Coviello K, Citro R, Colonna P, Carpeggiani C, Picano E. The Functional Meaning of B-Profile During Stress Lung Ultrasound. JACC Cardiovasc Imaging 2019; 12:928-930. [DOI: 10.1016/j.jcmg.2018.10.017] [Citation(s) in RCA: 9] [Impact Index Per Article: 1.5] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 06/22/2018] [Revised: 10/17/2018] [Accepted: 10/18/2018] [Indexed: 10/27/2022]
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46
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The value of a simplified approach to end-systolic volume measurement for assessment of left ventricular contractile reserve during stress-echocardiography. Int J Cardiovasc Imaging 2019; 35:1019-1026. [DOI: 10.1007/s10554-019-01599-5] [Citation(s) in RCA: 5] [Impact Index Per Article: 0.8] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 01/10/2019] [Accepted: 04/06/2019] [Indexed: 02/06/2023]
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47
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Cortigiani L, Ciampi Q, Rigo F, Bovenzi F, Picano E, Sicari R. Prognostic value of dual imaging stress echocardiography following coronary bypass surgery. Int J Cardiol 2019; 277:266-271. [DOI: 10.1016/j.ijcard.2018.09.105] [Citation(s) in RCA: 10] [Impact Index Per Article: 1.7] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 07/06/2018] [Revised: 09/07/2018] [Accepted: 09/25/2018] [Indexed: 01/06/2023]
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48
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Limongelli G, Fioretti V, Di Maio M, Verrengia M, Rubino M, Gravino R, Masarone D, D'Andrea A, Ciampi Q, Picano E, Elliott P, Pacileo G. Left Atrial Volume during Stress Is Associated with Increased Risk of Arrhythmias in Patients with Hypertrophic Cardiomyopathy. J Cardiovasc Echogr 2019; 29:1-6. [PMID: 31008030 PMCID: PMC6450231 DOI: 10.4103/jcecho.jcecho_45_18] [Citation(s) in RCA: 7] [Impact Index Per Article: 1.2] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 12/17/2022] Open
Abstract
Introduction: In patients affected by hypertrophic cardiomyopathy (HCM), left atrial volume index (LAVi) is associated with an increased risk of tachyarrhythmias and major clinical events. To date, the clinical meaning of LAVi measured during exercise (stress LAVi [sLAVi]) has not yet been investigated in HCM. This study sought to evaluate the correlation between LAVi/sLAVi and clinical outcome (risk of arrhythmias and heart failure [HF]) in patients with HCM. Methods and Results: We enrolled a total of 51 consecutive patients with HCM (39 men; mean age: 39.41 ± 17.9 years) who underwent standard and stress echocardiography, following a common protocol. During follow-up (median follow-up was 1.82 years), the following composite endpoints were collected: ARRHYT endpoint (atrial fibrillation, paroxysmal supraventricular tachycardia, nonsustained ventricular tachycardia (VT), sustained VT, ventricular fibrillation, syncope of likely cardiogenic nature, and sudden cardiac death) and HF endpoint (worsening of functional class and left ventricular ejection fraction, hospitalization, and death for end-stage HF). Eight patients were lost at follow-up. ARRHYT endpoint occurred in 13 (30.2%) patients (8, 18.6%, supraventricular and 10, 23.2%, ventricular arrhythmias), whereas HF endpoint occurred in 5 (11.6%) patients. sLAVi (mean value of 31.16 ± 10.15 mL/m2) performed better than rLAVi as a predictor of ARRHYT endpoint (Akaike Information Criterion: 48.37 vs. 50.37, if dichotomized according to the median values). A sLAVi value of 30 mL/m2 showed a predictive accuracy of 72.1% (C-statistics of 0.7346), with a high negative predictive value (87.5%). Conclusion: These findings encourage future studies on sLAVi, as a potential predictor of arrhythmias and adverse outcome in patients with HCM.
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Affiliation(s)
- Giuseppe Limongelli
- Cardiomyopathies and Heart Failure Department, Monaldi Hospital, Università della Campania "Luigi Vanvitelli," Nocera Inferiore, Italy.,Department of Traslational Sciences, Università della Campania "Luigi Vanvitelli," Nocera Inferiore, Italy.,Inherited Cardiovascular Disease Unit, Institute of Cardiovascular Sciences, University College of London, London, UK
| | - Vincenzo Fioretti
- Cardiomyopathies and Heart Failure Department, Monaldi Hospital, Università della Campania "Luigi Vanvitelli," Nocera Inferiore, Italy.,Department of Traslational Sciences, Università della Campania "Luigi Vanvitelli," Nocera Inferiore, Italy
| | - Marco Di Maio
- Cardiomyopathies and Heart Failure Department, Monaldi Hospital, Università della Campania "Luigi Vanvitelli," Nocera Inferiore, Italy.,Department of Traslational Sciences, Università della Campania "Luigi Vanvitelli," Nocera Inferiore, Italy
| | - Marina Verrengia
- Cardiomyopathies and Heart Failure Department, Monaldi Hospital, Università della Campania "Luigi Vanvitelli," Nocera Inferiore, Italy.,Department of Traslational Sciences, Università della Campania "Luigi Vanvitelli," Nocera Inferiore, Italy
| | - Marta Rubino
- Cardiomyopathies and Heart Failure Department, Monaldi Hospital, Università della Campania "Luigi Vanvitelli," Nocera Inferiore, Italy.,Department of Traslational Sciences, Università della Campania "Luigi Vanvitelli," Nocera Inferiore, Italy
| | - Rita Gravino
- Cardiomyopathies and Heart Failure Department, Monaldi Hospital, Università della Campania "Luigi Vanvitelli," Nocera Inferiore, Italy.,Department of Traslational Sciences, Università della Campania "Luigi Vanvitelli," Nocera Inferiore, Italy
| | - Daniele Masarone
- Cardiomyopathies and Heart Failure Department, Monaldi Hospital, Università della Campania "Luigi Vanvitelli," Nocera Inferiore, Italy.,Department of Traslational Sciences, Università della Campania "Luigi Vanvitelli," Nocera Inferiore, Italy
| | | | - Quirino Ciampi
- Cardiology Department, Ospedale Fatebenefratelli, Benevento, Italy
| | | | - Perry Elliott
- Inherited Cardiovascular Disease Unit, Institute of Cardiovascular Sciences, University College of London, London, UK
| | - Giuseppe Pacileo
- Cardiomyopathies and Heart Failure Department, Monaldi Hospital, Università della Campania "Luigi Vanvitelli," Nocera Inferiore, Italy.,Department of Traslational Sciences, Università della Campania "Luigi Vanvitelli," Nocera Inferiore, Italy
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49
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The prognostic value of exercise stress echocardiography - Validation of a newly implemented method in our center. COR ET VASA 2018. [DOI: 10.1016/j.crvasa.2018.01.006] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/21/2022]
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50
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Drop-off in positivity rate of stress echocardiography based on regional wall motion abnormalities over the last three decades. Int J Cardiovasc Imaging 2018; 35:627-632. [PMID: 30460582 DOI: 10.1007/s10554-018-1501-3] [Citation(s) in RCA: 2] [Impact Index Per Article: 0.3] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 06/26/2018] [Accepted: 11/13/2018] [Indexed: 01/09/2023]
Abstract
Previous studies have suggested a decline in positivity of stress cardiac imaging based on regional wall motion abnormalities (RWMA). To assess the rate of RWMA positivity of stress echocardiography (SE) over 3 decades in the same primary care SE lab. We retrospectively assessed the rate of SE positivity in 7626 SE tests (dipyridamole in 5053, dobutamine in 2496, exercise in 77) in consecutive patients with known or suspected coronary artery disease and /or heart failure who performed SE in a primary care referral center from April 1991 to May 2018. Starting April 2005, SE based on RWMA was complemented by assessment of coronary flow velocity reserve (CFVR) of the left anterior descending coronary artery. Starting October 2016, we added left ventricular contractile reserve (LVCR). Starting October 2016, we also added B-lines by lung ultrasound. There was a progressive decline over time in the rate of SE positivity based on RWMA from 24% (1991-1999) to 10% (2000-2009) down to 4% (2010-2018) (p < 0.0001). Positivity rate was 29% with CFVR, 16% with LVCR, and 12% with B-lines. Over three decades, we observed a dramatic decline in SE positivity rate based on classical RWMA. In the last decade, the positivity rate rose sharply thanks to the stepwise introduction of CFVR, LVCR and B-lines as additional positivity criteria in integrated quadruple SE.
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