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Young HML, Henson J, Dempsey PC, Willis SA, Billany RE, Curtis F, Gray L, Greenwood S, Herring LY, Highton P, Kelsey RJ, Lock S, March DS, Patel K, Sargeant J, Sathanapally H, Sayer AA, Thomas M, Vadaszy N, Watson E, Yates T, Davies M. Physical activity and sedentary behaviour interventions for people living with both frailty and multiple long-term conditions and their informal carers: a scoping review and stakeholder consultation. Age Ageing 2024; 53:afae255. [PMID: 39558868 PMCID: PMC11574057 DOI: 10.1093/ageing/afae255] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 02/06/2024] [Indexed: 11/20/2024] Open
Abstract
INTRODUCTION This scoping review mapped evidence on physical activity (including structured exercise) and sedentary behaviour interventions (interventions to reduce sedentary behaviour) in people living with both frailty and multiple long-term conditions (MLTCs) and their informal carers. METHODS Ten databases and grey literature were searched from 2000 to October 2023. Two reviewers screened studies and one extracted data. Results were shared with three stakeholder groups (n = 21) in a consultation phase. RESULTS After screening, 155 papers from 144 studies (1 ongoing) were retained. The majority were randomised controlled trials (86, 55%). Participants' mean age was 73 ± 12 years, and 73% were of White ethnicity. MLTC and frailty measurement varied widely. Most participants were pre-to-moderately frail. Physical health conditions predominated over mental health conditions.Interventions focused on structured exercise (83 studies, 60%) or combined interventions (55 studies, 39%). Two (1%) and one (0.7%) focused solely on habitual physical activity or sedentary behaviour. Adherence was 81% (interquartile range 62%-89%) with goal setting, monitoring and support important to adherence. Carers were only involved in 15 (11%) studies. Most interventions reported positive outcomes, primarily focusing on body functions and structures. CONCLUSIONS A modest volume of evidence exists on multicomponent structured exercise interventions, with less focus on habitual physical activity and sedentary behaviour. Interventions report largely positive effects, but an updated systematic review is required. The field could be advanced by more rigorous characterisation of MLTCs, socioeconomic status and ethnicity, increased informal carer involvement and further evaluation of habitual physical activity and sedentary behaviour interventions.
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Affiliation(s)
- Hannah M L Young
- Leicester Diabetes Centre, College of Life Sciences, University of Leicester, Leicester, UK
- Therapy Department, University of Hospitals of Leicester NHS Trust, Leicester, UK
- NIHR Leicester Biomedical Research Centre, University of Leicester and University Hospitals of Leicester NHS Trust, Leicester, UK
| | - Joseph Henson
- Leicester Diabetes Centre, College of Life Sciences, University of Leicester, Leicester, UK
- NIHR Leicester Biomedical Research Centre, University of Leicester and University Hospitals of Leicester NHS Trust, Leicester, UK
| | - Paddy C Dempsey
- Leicester Diabetes Centre, College of Life Sciences, University of Leicester, Leicester, UK
- MRC Epidemiology Unit, Institute of Metabolic Science, Cambridge University, Cambridge Biomedical Campus, Cambridge, UK
- Baker Heart and Diabetes Institute, Physical activity and behavioural epidemiology laboratory, Melbourne, Australia
- Institute for Physical Activity and Nutrition (IPAN), School of Exercise and Nutrition Sciences, Deakin University, Geelong, Victoria, Australia
| | - Scott A Willis
- NIHR Leicester Biomedical Research Centre, University of Leicester and University Hospitals of Leicester NHS Trust, Leicester, UK
- National Centre for Sport and Exercise Medicine, School of Sport, Exercise and Health Sciences, Loughborough University, Loughborough, UK
| | - Roseanne E Billany
- NIHR Leicester Biomedical Research Centre, University of Leicester and University Hospitals of Leicester NHS Trust, Leicester, UK
- Department of Cardiovascular Sciences, University of Leicester, Leicester, UK
| | - Ffion Curtis
- Liverpool Reviews & Implementation Group (LRiG), University of Liverpool, Liverpool, UK
| | - Laura Gray
- NIHR Leicester Biomedical Research Centre, University of Leicester and University Hospitals of Leicester NHS Trust, Leicester, UK
- Department of Population Health Sciences, University of Leicester, Leicester, UK
| | - Sharlene Greenwood
- Department of Renal Medicine, King’s College Hospital NHS Trust, London, UK
- Renal Sciences, Faculty of Life Sciences and Medicine, King’s College London, London, UK
| | - Louisa Y Herring
- Leicester Diabetes Centre, College of Life Sciences, University of Leicester, Leicester, UK
- NIHR Leicester Biomedical Research Centre, University of Leicester and University Hospitals of Leicester NHS Trust, Leicester, UK
| | - Patrick Highton
- Leicester Diabetes Centre, College of Life Sciences, University of Leicester, Leicester, UK
- NIHR Applied Research Collaboration East Midlands, Leicester General Hospital, Leicester, UK
| | - Ryan J Kelsey
- Leicester Diabetes Centre, College of Life Sciences, University of Leicester, Leicester, UK
- NIHR Leicester Biomedical Research Centre, University of Leicester and University Hospitals of Leicester NHS Trust, Leicester, UK
| | - Selina Lock
- Library Research Services, University of Leicester, Leicester, UK
| | - Daniel S March
- NIHR Leicester Biomedical Research Centre, University of Leicester and University Hospitals of Leicester NHS Trust, Leicester, UK
- Department of Cardiovascular Sciences, University of Leicester, Leicester, UK
| | - Krishna Patel
- Centre for Ethnic Health Research, University Hospitals of Leicester NHS Trust, Leicester, UK
| | - Jack Sargeant
- Leicester Diabetes Centre, College of Life Sciences, University of Leicester, Leicester, UK
- NIHR Leicester Biomedical Research Centre, University of Leicester and University Hospitals of Leicester NHS Trust, Leicester, UK
| | - Harini Sathanapally
- NIHR Applied Research Collaboration East Midlands, Leicester General Hospital, Leicester, UK
| | - Avan A Sayer
- AGE Research Group, NIHR Newcastle Biomedical Research Centre, Translational and Clinical Research Institute, Faculty of Medical Sciences, Newcastle University and Newcastle Upon Tyne Hospitals NHS Foundation Trust, Newcastle-Upon-Tyne, UK
| | - Martha Thomas
- Leicester Diabetes Centre, College of Life Sciences, University of Leicester, Leicester, UK
- NIHR Leicester Biomedical Research Centre, University of Leicester and University Hospitals of Leicester NHS Trust, Leicester, UK
| | - Noemi Vadaszy
- Department of Population Health Sciences, University of Leicester, Leicester, UK
| | - Emma Watson
- NIHR Leicester Biomedical Research Centre, University of Leicester and University Hospitals of Leicester NHS Trust, Leicester, UK
- Department of Cardiovascular Sciences, University of Leicester, Leicester, UK
| | - Tom Yates
- Leicester Diabetes Centre, College of Life Sciences, University of Leicester, Leicester, UK
- NIHR Leicester Biomedical Research Centre, University of Leicester and University Hospitals of Leicester NHS Trust, Leicester, UK
| | - Melanie Davies
- Leicester Diabetes Centre, College of Life Sciences, University of Leicester, Leicester, UK
- NIHR Leicester Biomedical Research Centre, University of Leicester and University Hospitals of Leicester NHS Trust, Leicester, UK
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Wei G, Shang Z, Li Y, Wu Y, Zhang L. Effects of lower-limb active resistance exercise on mobility, physical function, knee strength and pain intensity in patients with total knee arthroplasty: a systematic review and meta-analysis. BMC Musculoskelet Disord 2024; 25:730. [PMID: 39267026 PMCID: PMC11395693 DOI: 10.1186/s12891-024-07845-9] [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: 04/02/2024] [Accepted: 09/03/2024] [Indexed: 09/14/2024] Open
Abstract
BACKGROUND Total knee arthroplasty (TKA) successfully alleviates pain from knee osteoarthritis, but muscle strength and function are reduced for a long period postoperatively. Postoperative active resistance exercise may play a relevant role. PURPOSE To systematically evaluate effects of lower-limb active resistance exercise (ARE) on mobility, physical function, muscle strength and pain intensity in patients with TKA. METHODS A search was conducted in PubMed, EMBASE, and Cochrane Library databases from inception to September 2023. Only randomized controlled trials (RCTs) that compared the effects of ARE and no intervention or other rehabilitation program without PRE were included. The outcome variables were mobility (Maximal walking speed [MWS]/6-Minute Walk Test[6MWT]), physical function (Stair Climb Test [SCT]/Timed Up and Go [TUG]), knee extension/ flexion power(KEP/KFP), joint range of motion (ROM) and pain. Standardized Mean Differences (SMD) or Mean Differences (MD) and 95% confidence intervals (CI) were calculated and combined in meta-analyses. The Cochrane Collaboration's Handbook were used for the methodological quality assessments. GRADE was used to assess the quality of evidence. The meta-analysis was performed using the RevMan 5.4 software. RESULTS A total of 14 randomized controlled trials, involving 880 patients, were finally included. The lower-limb ARE exhibited significantly greater improvement in MWS (MD 0.13, 95%CI 0.08-0.18, P < 0.00001), TUG(MD -0.92, 95%CI -1.55- -0.28, P = 0.005), KEP (SMD 0.58, 95%CI 0.20-0.96, P = 0.003), KFP (SMD 0.38, 95%CI 0.13-0.63, P = 0.003), ROM-flexion (MD 2.74, 95%CI 1.82-3.67, P < 0.00001) and VAS (MD - 4.65, 95% CI - 7.86- -1.44, p = 0.005) compared to conventional exercise(CE) immediately post-intervention. However, there were no statistically significant differences between both groups in regard to 6MWT (MD 7.98, 95%CI -4.60-20.56, P = 0.21), SCT (MD -0.79, 95%CI -1.69-0.10, P = 0.08) and ROM-extension (MD -0.60, 95%CI -1.23-0.03, P = 0.06). CONCLUSIONS According to the results of meta-analysis, patients undergoing TKA who receive the lower extremity ARE show better clinical effects in terms of pain relief, strength recovery and knee ROM. Simultaneously, it may be beneficial to improve mobility and physical function of patients after TKA.
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Affiliation(s)
- Guo Wei
- Department of Orthopedics, The First College of Clinical Medical Science, China Three Gorges University, Yichang Central People's Hospital, Yichang City, Hubei Province, China.
| | - Zhenghui Shang
- Department of Orthopedics, The First College of Clinical Medical Science, China Three Gorges University, Yichang Central People's Hospital, Yichang City, Hubei Province, China
| | - Yupeng Li
- Department of Orthopedics, The First College of Clinical Medical Science, China Three Gorges University, Yichang Central People's Hospital, Yichang City, Hubei Province, China
| | - Yu Wu
- Department of Orthopedics, The First College of Clinical Medical Science, China Three Gorges University, Yichang Central People's Hospital, Yichang City, Hubei Province, China
| | - Li Zhang
- Department of Critical Care Medicine, The First College of Clinical Medical Science, China Three Gorges University, Yichang Central People's Hospital, Yichang City, Hubei Province, China
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Morrison RT, Taylor S, Buckley J, Twist C, Kite C. High-velocity power training has similar effects to traditional resistance training for functional performance in older adults: a systematic review. J Physiother 2023; 69:148-159. [PMID: 37328359 DOI: 10.1016/j.jphys.2023.05.018] [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: 03/07/2022] [Revised: 02/21/2023] [Accepted: 05/22/2023] [Indexed: 06/18/2023] Open
Abstract
QUESTIONS What is the effect of high-velocity power training (HVPT) compared with traditional resistance training (TRT) on functional performance in older adults? What is the quality of intervention reporting for the relevant literature? DESIGN Systematic review and meta-analysis of randomised controlled trials. PARTICIPANTS Older adults (aged > 60 years), regardless of health status, baseline functional capacity or residential status. INTERVENTIONS High-velocity power training with the intent to perform the concentric phase as quickly as possible compared with traditional moderate-velocity resistance training performed with a concentric phase of ≥ 2 seconds. OUTCOME MEASURES Short Physical Performance Battery (SPPB), Timed Up and Go test (TUG), five times sit-to-stand test (5-STS), 30-second sit-to-stand test (30-STS), gait speed tests, static or dynamic balance tests, stair climb tests and walking tests for distance. The quality of intervention reporting was assessed with the Consensus on Exercise Reporting Template (CERT) score. RESULTS Nineteen trials with 1,055 participants were included in the meta-analysis. Compared with TRT, HVPT had a weak-to-moderate effect on change from baseline scores for the SPPB (SMD 0.27, 95% CI 0.02 to 0.53; low-quality evidence) and TUG (SMD 0.35, 95% CI 0.06 to 0.63; low-quality evidence). The effect of HVPT relative to TRT for other outcomes remained very uncertain. The average CERT score across all trials was 53%, with two trials rated high quality and four rated moderate quality. CONCLUSION HVPT had similar effects to TRT for functional performance in older adults, but there is considerable uncertainty in most estimates. HVPT had better effects on the SPPB and TUG, but it is unclear whether the benefit is large enough to be clinically worthwhile.
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Affiliation(s)
- Robert T Morrison
- Chester Medical School, Faculty of Health, Medicine and Society, University of Chester, University Centre Shrewsbury, Shrewsbury, UK
| | - Sue Taylor
- Chester Medical School, Faculty of Health, Medicine and Society, University of Chester, University Centre Shrewsbury, Shrewsbury, UK
| | - John Buckley
- The School of Allied Health Professions, Keele University, Staffordshire, UK
| | - Craig Twist
- School of Sport and Exercise Sciences, Liverpool John Moores University, Liverpool, UK
| | - Chris Kite
- Chester Medical School, Faculty of Health, Medicine and Society, University of Chester, University Centre Shrewsbury, Shrewsbury, UK; School of Public Health Studies, Faculty of Education, Health and Wellbeing, University of Wolverhampton, UK; Warwickshire Institute for the Study of Diabetes, Endocrinology and Metabolism (WISDEM), University Hospitals Coventry and Warwickshire NHS Trust, Coventry, UK; Centre for Sport, Exercise & Life Sciences, Coventry University, Coventry, UK.
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Sklivas AB, Robinson LE, Uhl TL, Dupont-Versteegden EE, Mayer KP. Efficacy of power training to improve physical function in individuals diagnosed with frailty and chronic disease: A meta-analysis. Physiol Rep 2022; 10:e15339. [PMID: 35668578 PMCID: PMC9170947 DOI: 10.14814/phy2.15339] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 03/01/2022] [Revised: 05/16/2022] [Accepted: 05/17/2022] [Indexed: 11/24/2022] Open
Abstract
Muscle power training with emphasis on high-velocity of concentric movement improves physical functionality in healthy older adults, and, maybe superior to traditional exercise programs. Power training may also be advantageous for patients with acute and chronic illnesses, as well as frail individuals. To determine the efficacy of power training compared with traditional resistance training on physical function outcomes in individuals diagnosed with frailty, acute illness or chronic disease. PubMed (MEDLINE), CINAHL, PEDro, Web of Science, and Google Scholar. (1) at least one study group receives muscle power training of randomized controlled trial (RCT) (2) study participants diagnosed as prefrail, frail or have an ongoing acute or chronic disease, condition or illness; (3) study participants over the age of 18; (4) publication in English language; (5) included physical function as the primary or secondary outcome measures. Two independent reviewers assessed articles for inclusion and graded the methodological quality using Cochrane Risk-of-Bias tool for RCTs. Fourteen RCTs met the inclusion criteria. In seven studies, muscle power training was more effective at improving physical function compared to control activities with a mean fixed effect size (ES) of 0.41 (p = 0.006; 95% CI 0.12 to 0.71). Power training and conventional resistance training had similar effectiveness in eight studies with a mean fixed ES of 0.10 (p = 0.061; 95% CI -0.01 to 0.40). Muscle power training is just as efficacious for improving physical function in individuals diagnosed with frailty and chronic disease when compared to traditional resistance training. The advantages of power training with reduced work per session may support power training as a preferential exercise modality for clinical populations. The findings should be interpreted with caution since generalizability is questioned due to the heterogeneity of patient populations enrolled and participants were relatively mobile at baseline.
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Affiliation(s)
- Alexander B Sklivas
- Department of Physical Therapy, College of Health Sciences, University of Kentucky, Lexington, Kentucky, USA.,Center for Muscle Biology, College of Health Sciences, University of Kentucky Lexington, Kentucky, USA
| | | | - Timothy L Uhl
- Department of Physical Therapy, College of Health Sciences, University of Kentucky, Lexington, Kentucky, USA
| | - Esther E Dupont-Versteegden
- Department of Physical Therapy, College of Health Sciences, University of Kentucky, Lexington, Kentucky, USA.,Center for Muscle Biology, College of Health Sciences, University of Kentucky Lexington, Kentucky, USA
| | - Kirby P Mayer
- Department of Physical Therapy, College of Health Sciences, University of Kentucky, Lexington, Kentucky, USA.,Center for Muscle Biology, College of Health Sciences, University of Kentucky Lexington, Kentucky, USA
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Bakaa N, Chen LH, Carlesso L, Richardson J, Macedo L. Reporting of post-operative rehabilitation interventions for Total knee arthroplasty: a scoping review. BMC Musculoskelet Disord 2021; 22:602. [PMID: 34193139 PMCID: PMC8247251 DOI: 10.1186/s12891-021-04460-w] [Citation(s) in RCA: 2] [Impact Index Per Article: 0.5] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 02/08/2021] [Accepted: 06/08/2021] [Indexed: 12/17/2022] Open
Abstract
OBJECTIVE The aim of this study was to evaluate the completeness of reporting of exercise adherence and exercise interventions delivered as part of clinical trials of post-operative total knee replacement (TKA) rehabilitation. DESIGN Scoping review LITERATURE SEARCH: A literature search was conducted in PubMed, EMBASE, AMED, CINAHL, SPORTDiscus and Cochrane Library. STUDY SELECTION CRITERIA All randomized controlled trials (RCT) that examined post-operative exercise-based interventions for total knee arthroplasty were eligible for inclusion. Studies that were multifactorial or contained exercise interventions for both hip and knee arthroplasty were also included. DATA SYNTHESIS The definition, type of measurement used and outcome for exercise adherence were collected and analyzed descreptively. Quality of reporting of exercise interventions were assessed using the Consensus for Exercise Reporting Tool (CERT) and the Cochrane Risk of Bias Tool. RESULTS There were a total of 112 RCTs included in this review. The majority of RCTs (63%, n = 71) did not report exercise adherence. Only 23% (n = 15) of studies provided a definition of adherence. RCTs were of poor quality, with 85% (n = 95) of studies having high or unclear risk of bias. Reporting of exercise interventions was poor, with only 4 items (of 19) (21%) of the CERT adequately reported (88-99%), with other items not fulfilled on at least 60% of the RCTs. There were no RCTs that had fulfilled all the criteria for the CERT. CONCLUSION The RCTs included in this study poorly reported exercise adherence, as well as description of the post-operative TKA rehabilitation intervention. Future RCTs should use valid and reliable measures of adherence and a proper tool for reporting of exercise interventions (e.g., CERT, TiDER). PRE-REGISTRATION OSF: https://osf.io/9ku8a/.
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Affiliation(s)
- Nora Bakaa
- School of Rehabilitation Sciences, Faculty of Health Sciences, McMaster University, Institute of Applied Health Sciences, Room 403, 1400 Main St. W., Hamilton, ON, L8S 1C7, Canada.
| | - Lu Hsi Chen
- School of Rehabilitation Sciences, Faculty of Health Sciences, McMaster University, Institute of Applied Health Sciences, Room 403, 1400 Main St. W., Hamilton, ON, L8S 1C7, Canada
| | - Lisa Carlesso
- School of Rehabilitation Sciences, Faculty of Health Sciences, McMaster University, Institute of Applied Health Sciences, Room 403, 1400 Main St. W., Hamilton, ON, L8S 1C7, Canada
| | - Julie Richardson
- School of Rehabilitation Sciences, Faculty of Health Sciences, McMaster University, Institute of Applied Health Sciences, Room 403, 1400 Main St. W., Hamilton, ON, L8S 1C7, Canada
| | - Luciana Macedo
- School of Rehabilitation Sciences, Faculty of Health Sciences, McMaster University, Institute of Applied Health Sciences, Room 403, 1400 Main St. W., Hamilton, ON, L8S 1C7, Canada
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Dávila Castrodad IM, Recai TM, Abraham MM, Etcheson JI, Mohamed NS, Edalatpour A, Delanois RE. Rehabilitation protocols following total knee arthroplasty: a review of study designs and outcome measures. ANNALS OF TRANSLATIONAL MEDICINE 2019; 7:S255. [PMID: 31728379 DOI: 10.21037/atm.2019.08.15] [Citation(s) in RCA: 86] [Impact Index Per Article: 14.3] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Subscribe] [Scholar Register] [Indexed: 01/16/2023]
Abstract
Total knee arthroplasty (TKA) is among the most common elective procedures performed worldwide. Recent efforts have been made to significantly improve patient outcomes, specifically with postoperative rehabilitation. Despite the many rehabilitation modalities available, the optimal rehabilitation strategy has yet to be determined. Therefore, this systematic review focuses on evaluating existing postoperative rehabilitation protocols. Specifically, this review analyses the study designs, rehabilitation methods, and outcome measures of postoperative rehabilitation protocols for TKA recipients in the past five years. The PubMed, EMBASE, and Cochrane Library databases were queried for studies evaluating rehabilitation protocols following primary TKA. Of the 11,013 studies identified within the last five years, 70 met the inclusion and exclusion criteria. After assessing for relevance and removing duplicates, a final count of 20 studies remained for analysis. Level-of-evidence was determined by the American Academy of Orthopaedic Surgeons (AAOS) classification system. Our findings demonstrated that continuous passive motion and inpatient rehabilitation may not provide additional benefit to the patient or healthcare system. However, early rehabilitation, telerehabilitation, outpatient therapy, high intensity, and high velocity exercise may be successful forms of rehabilitation. Additionally, weight-bearing biofeedback, neuromuscular electrical stimulation, and balance control appear to be beneficial adjuncts to conventional rehabilitation. Postoperative rehabilitation following TKA facilitates patient recovery and improves quality of life. This systematic review analyzed the existing rehabilitation protocols from the past five years. Some studies did not accurately describe the conventional rehabilitation protocols, the duration of therapy sessions, and the timing of these sessions. As such, future studies should explicitly describe their methodology. This will allow high-quality assessments and the conception of standardized protocols.
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Affiliation(s)
- Iciar M Dávila Castrodad
- Rubin Institute for Advanced Orthopedics, Center for Joint Preservation and Replacement, Sinai Hospital of Baltimore, Baltimore, MD, USA
| | - Thea M Recai
- Rubin Institute for Advanced Orthopedics, Center for Joint Preservation and Replacement, Sinai Hospital of Baltimore, Baltimore, MD, USA
| | - Megha M Abraham
- Rubin Institute for Advanced Orthopedics, Center for Joint Preservation and Replacement, Sinai Hospital of Baltimore, Baltimore, MD, USA
| | - Jennifer I Etcheson
- Rubin Institute for Advanced Orthopedics, Center for Joint Preservation and Replacement, Sinai Hospital of Baltimore, Baltimore, MD, USA
| | - Nequesha S Mohamed
- Rubin Institute for Advanced Orthopedics, Center for Joint Preservation and Replacement, Sinai Hospital of Baltimore, Baltimore, MD, USA
| | - Armin Edalatpour
- Rubin Institute for Advanced Orthopedics, Center for Joint Preservation and Replacement, Sinai Hospital of Baltimore, Baltimore, MD, USA
| | - Ronald E Delanois
- Rubin Institute for Advanced Orthopedics, Center for Joint Preservation and Replacement, Sinai Hospital of Baltimore, Baltimore, MD, USA
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