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Shi M, Zhang Q, Gao C, Song J, Shen C, Zhang X. Fabrication and application of continuous douche for Da Vinci surgical robot arm. Langenbecks Arch Surg 2025; 410:82. [PMID: 40009230 PMCID: PMC11865221 DOI: 10.1007/s00423-025-03635-6] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 09/26/2024] [Accepted: 02/03/2025] [Indexed: 02/27/2025]
Abstract
BACKGROUND The use of robotic surgery in hospitals is becoming increasingly widespread. OBJECTIVE This research was performed to design a continuous douche for surgical robotic arm operated instruments and evaluate its use. METHODS A continuous irrigator was designed for robotic arm operated surgical instruments. A total of 240 recovered robotic-arm instruments were selected from the Disinfection Supply Center of our hospital. These were divided into two groups according to their recycling order, with single number instruments in the control group and even number instruments in the experimental group. Each group included 120 pieces. In the experimental group, continuous douching was used for perfusion and soaking, while control group instruments were infused and soaked using a 50 mL syringe. Data on cleaning quality, accuracy of perfusion tool injection volume, incidence of liquid reverse osmosis during injection and washing, and product satisfaction were collected for both groups. RESULTS The qualified manipulator cleaning rate and satisfaction with perfusion tools were higher in the experimental group than in the control group, and incidence of liquid reverse osmosis was lower in the experimental group than in the control group. CONCLUSIONS The self-made continuous perfusion device improved the instrument cleaning efficacy of the robotic surgical arm, accuracy of injection volume, and product satisfaction.
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Affiliation(s)
- Min Shi
- Disinfection Supply Center, Jiangsu Provincial People's Hospital, No. 300 Guangzhou Road, Gulou District, Nanjing, Jiangsu Province, China.
| | - Qian Zhang
- Department of Anesthesiology and Perioperative Medicine, Jiangsu Provincial People's Hospital, Nanjing, China
| | - Chunhong Gao
- Nursing Department, Jiangsu Provincial People's Hospital, Nanjing, China
| | - Jin Song
- Disinfection Supply Center, Jiangsu Provincial People's Hospital, No. 300 Guangzhou Road, Gulou District, Nanjing, Jiangsu Province, China
| | - Cuixia Shen
- Disinfection Supply Center, Jiangsu Provincial People's Hospital, No. 300 Guangzhou Road, Gulou District, Nanjing, Jiangsu Province, China
| | - Xiang Zhang
- Department of Infectious Diseases, Jiangsu Provincial People's Hospital, Nanjing, China
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Vashist Y, Goyal A, Shetty P, Girnyi S, Cwalinski T, Skokowski J, Malerba S, Prete FP, Mocarski P, Kania MK, Świerblewski M, Strzemski M, Suárez-Carreón LO, Kok JHH, Calomino N, Jain V, Polom K, Kycler W, Calu V, Talento P, Brillantino A, Ciarleglio FA, Brusciano L, Cillara N, Duka R, Pascotto B, Azagra JS, Testini M, Abou-Mrad A, Marano L, Oviedo RJ. Evaluating Postoperative Morbidity and Outcomes of Robotic-Assisted Esophagectomy in Esophageal Cancer Treatment-A Comprehensive Review on Behalf of TROGSS (The Robotic Global Surgical Society) and EFISDS (European Federation International Society for Digestive Surgery) Joint Working Group. Curr Oncol 2025; 32:72. [PMID: 39996872 PMCID: PMC11854120 DOI: 10.3390/curroncol32020072] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 01/02/2025] [Revised: 01/24/2025] [Accepted: 01/27/2025] [Indexed: 02/26/2025] Open
Abstract
BACKGROUND Esophageal cancer, the seventh most common malignancy globally, requires esophagectomy for curative treatment. However, esophagectomy is associated with high postoperative morbidity and mortality, highlighting the need for minimally invasive approaches. Robotic-assisted surgery has emerged as a promising alternative to traditional open and minimally invasive esophagectomy (MIE), offering potential benefits in improving clinical and oncological outcomes. This review aims to assess the postoperative morbidity and outcomes of robotic surgery. METHODS A comprehensive review of the current literature was conducted, focusing on studies evaluating the role of robotic-assisted surgery in esophagectomy. Data were synthesized on the clinical outcomes, including postoperative complications, survival rates, and recovery time, as well as technological advancements in robotic surgery platforms. Studies comparing robotic-assisted esophagectomy with traditional approaches were analyzed to determine the potential advantages of robotic systems in improving surgical precision and patient outcomes. RESULTS Robotic-assisted esophagectomy (RAMIE) has shown significant improvements in clinical outcomes compared to open surgery and MIE, including reduced postoperative pain, less blood loss, and faster recovery. RAMIE offers enhanced thoracic access, with fewer complications than thoracotomy. The RACE technique has improved patient recovery and reduced morbidity. Fluorescence-guided technologies, including near-infrared fluorescence (NIRF), have proven valuable for sentinel node biopsy, lymphatic mapping, and angiography, helping identify critical structures and minimizing complications like anastomotic leakage and chylothorax. Despite these benefits, challenges such as the high cost of robotic systems and limited long-term data hinder broader adoption. Hybrid approaches, combining robotic and open techniques, remain common in clinical practice. CONCLUSIONS Robotic-assisted esophagectomy offers promising advantages, including enhanced precision, reduced complications, and faster recovery, but challenges related to cost, accessibility, and evidence gaps must be addressed. The hybrid approach remains a valuable option in select clinical scenarios. Continued research, including large-scale randomized controlled trials, is necessary to further establish the role of robotic surgery as the standard treatment for resectable esophageal cancer.
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Affiliation(s)
- Yogesh Vashist
- Department of Surgery, Organ Transplant Center for Excellence, Center for Liver Diseases and Oncology, King Faisal Specialist Hospital and Research Center, Riyadh 12271, Saudi Arabia;
| | - Aman Goyal
- Department of General Surgery, Mahatma Gandhi Medical College and Research Institute, Pondicherry, Cuddalore Rd, ECR, Pillayarkuppam, Puducherry 607402, India;
- Department of Surgery, Adesh Institute of Medical Sciences and Research, Bathinda 151001, India
| | - Preethi Shetty
- Kasturba Medical College, Manipal, Manipal Academy of Higher Education, Manipal 576104, India;
| | - Sergii Girnyi
- Department of General Surgery and Surgical Oncology, “Saint Wojciech” Hospital, “Nicolaus Copernicus” Health Center, 80-000 Gdańsk, Poland; (S.G.); (T.C.); (J.S.); (S.M.); (P.M.); (M.K.K.); (M.Ś.)
| | - Tomasz Cwalinski
- Department of General Surgery and Surgical Oncology, “Saint Wojciech” Hospital, “Nicolaus Copernicus” Health Center, 80-000 Gdańsk, Poland; (S.G.); (T.C.); (J.S.); (S.M.); (P.M.); (M.K.K.); (M.Ś.)
| | - Jaroslaw Skokowski
- Department of General Surgery and Surgical Oncology, “Saint Wojciech” Hospital, “Nicolaus Copernicus” Health Center, 80-000 Gdańsk, Poland; (S.G.); (T.C.); (J.S.); (S.M.); (P.M.); (M.K.K.); (M.Ś.)
- Department of Medicine, Academy of Applied Medical and Social Sciences-AMiSNS: Akademia Medycznych I Spolecznych Nauk Stosowanych, 52-300 Elbląg, Poland;
| | - Silvia Malerba
- Department of General Surgery and Surgical Oncology, “Saint Wojciech” Hospital, “Nicolaus Copernicus” Health Center, 80-000 Gdańsk, Poland; (S.G.); (T.C.); (J.S.); (S.M.); (P.M.); (M.K.K.); (M.Ś.)
- Department of Medicine, Academy of Applied Medical and Social Sciences-AMiSNS: Akademia Medycznych I Spolecznych Nauk Stosowanych, 52-300 Elbląg, Poland;
- Department of Precision and Regenerative Medicine and Ionian Area, University of Bari “Aldo Moro”, 70110 Bari, Italy; (F.P.P.); (M.T.)
| | - Francesco Paolo Prete
- Department of Precision and Regenerative Medicine and Ionian Area, University of Bari “Aldo Moro”, 70110 Bari, Italy; (F.P.P.); (M.T.)
| | - Piotr Mocarski
- Department of General Surgery and Surgical Oncology, “Saint Wojciech” Hospital, “Nicolaus Copernicus” Health Center, 80-000 Gdańsk, Poland; (S.G.); (T.C.); (J.S.); (S.M.); (P.M.); (M.K.K.); (M.Ś.)
| | - Magdalena Kamila Kania
- Department of General Surgery and Surgical Oncology, “Saint Wojciech” Hospital, “Nicolaus Copernicus” Health Center, 80-000 Gdańsk, Poland; (S.G.); (T.C.); (J.S.); (S.M.); (P.M.); (M.K.K.); (M.Ś.)
| | - Maciej Świerblewski
- Department of General Surgery and Surgical Oncology, “Saint Wojciech” Hospital, “Nicolaus Copernicus” Health Center, 80-000 Gdańsk, Poland; (S.G.); (T.C.); (J.S.); (S.M.); (P.M.); (M.K.K.); (M.Ś.)
| | - Marek Strzemski
- Department of Anesthesiology and Intensive Care, “Saint Wojciech” Hospital, “Nicolaus Copernicus” Health Center, 80-000 Gdańsk, Poland;
| | - Luis Osvaldo Suárez-Carreón
- Department of Bariatric Surgery, UMAE Hospital de Especialidades del Centro Medico Nacional de Occidente, Guadalajara 44100, Mexico;
- Department of Surgery, Universidad de Guadalajara, Guadalajara 44340, Mexico
| | - Johnn Henry Herrera Kok
- Department of Surgery, Complejo Asistencial Universitario de Palencia, 34401 Palencia, Spain;
| | - Natale Calomino
- Department of Medicine, Surgery, and Neurosciences, University of Siena, 53100 Siena, Italy;
| | - Vikas Jain
- Department of Surgical Oncology & Robotic services, HCG Manavata Cancer Center, Nashik 422002, India;
| | - Karol Polom
- Department of Medicine, Academy of Applied Medical and Social Sciences-AMiSNS: Akademia Medycznych I Spolecznych Nauk Stosowanych, 52-300 Elbląg, Poland;
- Department of Gastrointestinal Surgical Oncology, Greater Poland Cancer Centre, 61-866 Poznan, Poland;
| | - Witold Kycler
- Department of Gastrointestinal Surgical Oncology, Greater Poland Cancer Centre, 61-866 Poznan, Poland;
| | - Valentin Calu
- Department of Surgery, University of Medicine and Pharmacy Carol Davila, 010001 Bucharest, Romania;
| | - Pasquale Talento
- Department of Surgery, Pelvic Floor Center, AUSL-IRCCS Reggio Emilia, 42122 Reggio Emilia, Italy;
| | | | | | - Luigi Brusciano
- Division of General, Oncological, Mini-Invasive and Obesity Surgery, University of Study of Campania “Luigi Vanvitelli”, 80131 Naples, Italy;
| | - Nicola Cillara
- Department of Surgery, “SS. Trinità” Hospital, 09121 Cagliari, Italy;
| | - Ruslan Duka
- Department of Surgery, Dnipro State Medical University, 49044 Dnipro, Ukraine;
| | - Beniamino Pascotto
- Department of General and Minimally Invasive Surgery (Laparoscopy & Robotic), Centre Hospitalier de Luxembourg, 1210 Luxembourg, Luxembourg; (B.P.); (J.S.A.)
| | - Juan Santiago Azagra
- Department of General and Minimally Invasive Surgery (Laparoscopy & Robotic), Centre Hospitalier de Luxembourg, 1210 Luxembourg, Luxembourg; (B.P.); (J.S.A.)
| | - Mario Testini
- Department of Precision and Regenerative Medicine and Ionian Area, University of Bari “Aldo Moro”, 70110 Bari, Italy; (F.P.P.); (M.T.)
| | - Adel Abou-Mrad
- Department of Surgery, Centre Hospitalier Universitaire d’Orléans, 45000 Orléans, France;
| | - Luigi Marano
- Department of General Surgery and Surgical Oncology, “Saint Wojciech” Hospital, “Nicolaus Copernicus” Health Center, 80-000 Gdańsk, Poland; (S.G.); (T.C.); (J.S.); (S.M.); (P.M.); (M.K.K.); (M.Ś.)
- Department of Medicine, Academy of Applied Medical and Social Sciences-AMiSNS: Akademia Medycznych I Spolecznych Nauk Stosowanych, 52-300 Elbląg, Poland;
- Department of Medicine, Surgery, and Neurosciences, University of Siena, 53100 Siena, Italy;
- Department of Surgery, Dnipro State Medical University, 49044 Dnipro, Ukraine;
| | - Rodolfo J. Oviedo
- Department of Surgery, Nacogdoches Medical Center, Nacogdoches, TX 75962, USA
- Department of Surgery, University of Houston Tilman J. Fertitta Family College of Medicine, Houston, TX 77001, USA
- Department of Surgery, Sam Houston State University College of Osteopathic Medicine, Conroe, TX 77301, USA
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Casas MA, Angeramo CA, Bras Harriott C, Dreifuss NH, Schlottmann F. Indocyanine green (ICG) fluorescence imaging for prevention of anastomotic leak in totally minimally invasive Ivor Lewis esophagectomy: a systematic review and meta-analysis. Dis Esophagus 2022; 35:doab056. [PMID: 34378016 DOI: 10.1093/dote/doab056] [Citation(s) in RCA: 21] [Impact Index Per Article: 7.0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 05/18/2021] [Revised: 07/07/2021] [Accepted: 07/23/2021] [Indexed: 12/11/2022]
Abstract
BACKGROUND Indocyanine green (ICG) fluorescence imaging is an emerging technology that might help decreasing anastomotic leakage (AL) rates. The aim of this study was to determine the usefulness of ICG fluorescence imaging for the prevention of AL after minimally invasive esophagectomy with intrathoracic anastomosis. METHODS A systematic literature review of the MEDLINE and Cochrane databases was performed to identify all articles on totally minimally invasive Ivor Lewis esophagectomy. Studies were then divided into two groups based on the use or not of ICG for perfusion assessment. Primary outcome was anastomotic leak. Secondary outcomes included operative time, ICG-related adverse reactions, and mortality rate. A meta-analysis was conducted to estimate the overall weighted proportion and its 95% confidence interval (CI) for main outcomes. RESULTS A total of 3,171 patients were included for analysis: 381 (12%) with intraoperative ICG fluorescence imaging and 2,790 (88%) without ICG. Mean patients' age and proportion of males were similar between groups. Mean operative time was also similar between both groups (ICG: 354.8 vs. No-ICG: 354.1 minutes, P = 0.52). Mean ICG dose was 12 mg (5-21 mg). No ICG-related adverse reactions were reported. AL rate was 9% (95% CI, 5-17%) and 9% (95% CI, 7-12%) in the ICG and No-ICG groups, respectively. The risk of AL was similar between groups (odds ratio 0.85, 95% CI 0.53-1.28, P = 0.45). Mortality was 3% (95% CI, 1-9%) in patients with ICG and 2% (95% CI, 2-3%) in those without ICG. Median length of hospital stay was also similar between groups (ICG: 13.6 vs. No-ICG: 11.2 days, P = 0.29). CONCLUSION The use of ICG fluorescence imaging for perfusion assessment does not seem to reduce AL rates in patients undergoing minimally invasive esophagectomy with intrathoracic anastomosis.
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Affiliation(s)
- María A Casas
- Department of Surgery, Hospital Alemán of Buenos Aires, Buenos Aires, Argentina
| | - Cristian A Angeramo
- Department of Surgery, Hospital Alemán of Buenos Aires, Buenos Aires, Argentina
| | | | - Nicolás H Dreifuss
- Department of Surgery, Hospital Alemán of Buenos Aires, Buenos Aires, Argentina
| | - Francisco Schlottmann
- Department of Surgery, Hospital Alemán of Buenos Aires, Buenos Aires, Argentina
- Division of Esophageal and Gastric Surgery, Hospital Alemán of Buenos Aires, Buenos Aires, Argentina
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Angeramo CA, Bras Harriott C, Casas MA, Schlottmann F. Minimally invasive Ivor Lewis esophagectomy: Robot-assisted versus laparoscopic-thoracoscopic technique. Systematic review and meta-analysis. Surgery 2021; 170:1692-1701. [PMID: 34389164 DOI: 10.1016/j.surg.2021.07.013] [Citation(s) in RCA: 26] [Impact Index Per Article: 6.5] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 04/29/2021] [Revised: 06/06/2021] [Accepted: 07/12/2021] [Indexed: 12/18/2022]
Abstract
BACKGROUND Evidence comparing conventional minimally invasive esophagectomy (CMIE) via laparoscopy and thoracoscopy with robot-assisted minimally invasive esophagectomy (RAMIE) is scarce. The aim of this meta-analysis was to compare surgical outcomes after CMIE and RAMIE with an intrathoracic anastomosis. METHODS A systematic literature search was performed to identify original articles analyzing outcomes after CMIE and RAMIE. Main surgical outcomes included operative time, intraoperative blood loss, anastomotic leak rates, pneumonia, overall morbidity, length of stay (LOS), and 30-day mortality. Oncologic outcomes included lymph node yield and R0 resections rates. A meta-analysis of proportions and linear regression models were used to assess the effect of each procedure on the different outcomes. RESULTS A total of 6,249 patients were included for analysis; 5,275 (84%) underwent CMIE and 974 (16%) RAMIE. Robotic esophagectomy had longer operative time and less intraoperative blood loss. Anastomotic leakage rates were similar with both approaches. Patients undergoing RAMIE had significantly lower rates of postoperative pneumonia (OR 0.46, 95% CI 0.35-0.61, P < .0001) and overall morbidity (OR 0.67, 95% CI 0.58-0.79, P < .0001). Median LOS was similar in both procedures (RAMIE: 12.1 versus CMIE: 11.9 days, P = .64). Similar mortality rates were found after RAMIE and CMIE (OR 0.69, 95% CI 0.34-1.38, P = .29). Lymph node yield was similar in both procedures, but RAMIE was associated with higher rates of R0 resection (OR 2.84, 95% CI 1.53-5.26, P < .001). CONCLUSION Patients undergoing robotic esophagectomy have less intraoperative blood loss, lower rates of postoperative pneumonia, reduced overall morbidity, and higher rates of R0 resections, as compared with those undergoing a laparoscopic-thoracoscopic esophageal resection.
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Affiliation(s)
| | | | - María A Casas
- Department of Surgery, Hospital Alemán of Buenos Aires, Argentina
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