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1

Ishikawa, Norihiko, Go Watanabe, Yasumitsu Hirano, Noriyuki Inaki, Kenji Kawachi, and Makoto Oda. "Origami using da Vinci Surgical System." Surgical Endoscopy 21, no. 7 (2007): 1252–53. http://dx.doi.org/10.1007/s00464-007-9416-4.

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2

Ishikawa, Norihiko, Go Watanabe, Noriyuki Inaki, Hideki Moriyama, Masanari Shimada, and Masahiko Kawaguchi. "The da Vinci Surgical System versus the Radius Surgical System." Surgical Science 03, no. 07 (2012): 358–61. http://dx.doi.org/10.4236/ss.2012.37070.

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3

Kurowski, Marek, Karolina Kuczapska, Anna Gliwa, et al. "Robot-assisted radical prostatectomy with da Vinci single-port system." Journal of Education, Health and Sport 77 (January 11, 2025): 56945. https://doi.org/10.12775/jehs.2025.77.56945.

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Introduction and purpose Prostate cancer is the most common malignant tumor in men in Poland. In 2021, the standardized incidence rate was 48.2 cases per 100,000 people. It is diagnosed mainly in men over 60 years of age. The choice of treatment method depends on the stage of the disease, general condition and age of the patient. Treatment mainly includes surgery, radiotherapy and hormone therapy. In the case of surgical procedures, it is possible to perform prostate cancer surgery using the Da Vinci single-port surgical robot. The aim of this literature review is to describe the procedure of
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Kim, Hyung Bae, Joon Hur, Sae Byul Lee, et al. "Comparison of Robot-assisted Implant-based Breast Reconstruction Systems: Single-site da Vinci Xi System Versus SP System." Plastic and Reconstructive Surgery - Global Open 13, no. 7 (2025): e6970. https://doi.org/10.1097/gox.0000000000006970.

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Background: Two types of robotic systems are mainly used in implant-based robot-assisted breast reconstruction (RBR): the single-site approach using the da Vinci Xi system (Xi-RBR), and SP system (SP-RBR). In this study, we aimed to compare Xi-RBR and SP-RBR in prosthetic breast reconstruction. Methods: A total of 24 patients (27 breasts) and 25 patients (25 breasts) underwent implant-based breast reconstruction from July 2019 to October 2021 with da Vinci Xi and SP, respectively, by a single surgeon. Data were collected through a retrospective chart review regarding patient demographics, surg
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Ishikawa, Norihiko, You Su Sun, L. Wiley Nifong, Go Watanabe, and W. Randolph Chitwood. "Thoracoscopic Lobectomy with the da Vinci Surgical System." Innovations: Technology and Techniques in Cardiothoracic and Vascular Surgery 1, no. 4 (2006): 169–70. http://dx.doi.org/10.1097/01.imi.0000225788.98583.e4.

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Thoracoscopic upper lobectomy has been performed with the da Vinci surgical system in human cadavers. A minithoracotomy and two additional thoraco ports provided access to the thoracic cavity. An auxiliary port was used for both retraction of the lung and suction. The pulmonary vessels were ligated by robotic instruments, and the bronchi were divided after suturing robotically or with automatic staplers. A standard lymph node dissection was performed. The current da Vinci surgical system provided superior optics and enhanced dexterity. The application of the system for minimally invasive lobec
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6

Kozlov, Yury A., Alexander P. Rozhanski, Marina V. Makarochkina, et al. "Contemporary robotic surgical systems: A preliminary review." Russian Journal of Pediatric Surgery, Anesthesia and Intensive Care 15, no. 1 (2025): 35–50. https://doi.org/10.17816/psaic1878.

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Robot-assisted surgery has emerged as the most transformative technological advancement in this field of medicine over the past two decades. Since the U.S. Food and Drug Administration (FDA) approved the da Vinci robotic surgical system (Intuitive Surgical, Sunnyvale, California, USA) in 2000, it has revolutionized minimally invasive surgery by shortening the learning curve and facilitating reconstructive steps in many procedures compared to conventional laparoscopy. Today, the da Vinci system accounts for approximately 80% of the global surgical robotics market. However, its high acquisition
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So, Kyeong A. "Surgical platforms and instruments in robotic hysterectomy using the da Vinci Xi system." Gynecologic Robotic Surgery 4, no. 1 (2023): 8–13. http://dx.doi.org/10.36637/grs.2023.00178.

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Since the United States Food and Drug Administration approval of the da Vinci Surgical System for gynecologic surgery in 2005, it has been rapidly adopted at various centers where it is available. Previous studies reported that the da Vinci robotic platform is a feasible treatment option for hysterectomy. The EndoWrist function of robotic instruments allows for better and more precise performance than that of straight-stick laparoscopic instruments. Different surgical platforms are used by different institutions or surgeons in robotic hysterectomies. This is a review and summary of the various
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8

Слободин, Ю. В. "Laparoscopic and Robotic Surgery for Gastric Cancer: Modern State." Евразийский онкологический журнал, no. 2 (July 7, 2020): 159–68. http://dx.doi.org/10.34883/pi.2020.8.2.020.

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Сегодня в мире уже заняли достойное место малоинвазивные методы хирургии рака желудка: лапароскопическая и роботическая хирургия. Исследования показали преимущества лапароскопической гастрэктомии (ЛГ) перед открытой гастрэктомией (ОГ): снижение интенсивности болевого синдрома; более раннее восстановление функции кишечника; более короткий госпитальный период; косметический эффект; сопоставимая с открытой хирургией онкологическая безопасность. Лапароскопическая гастрэктомия имеет ряд недостатков: двухмерное изображение операционного поля; ограничение движения при использовании линейных хирургиче
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9

Yamada, Yuta, Shigenori Kakutani, Yoichi Fujii, et al. "Retzius-Sparing Robot-Assisted Radical Prostatectomy Using the Hinotori Surgical Robot System Platform: Report of the First Series of Experiences." Current Oncology 31, no. 9 (2024): 5537–43. http://dx.doi.org/10.3390/curroncol31090410.

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Background: The aim of this study is to describe the first series of six patients undergoing Retzius-sparing robot-assisted radical prostatectomy (rs-RARP) using the hinotori surgical robot system (hinotori SRS) and to compare the treatment outcomes with those achieved with the da Vinci surgical platform. Methods: This study included 20 cases involving the rs-RARP procedure (hinotori: N = 6; da Vinci: N = 14) that were performed between May 2021 and April 2024 in a single institution. Results: No significant differences were observed between the hinotori and da Vinci groups regarding the preop
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10

Ishikawa, Norihiko, You Su Sun, L. Wiley Nifong, Go Watanabe, and W. Randolph Chitwood. "Thoracoscopic Lobectomy with the da Vinci Surgical System." Innovations: Technology and Techniques in Cardiothoracic and Vascular Surgery 1, no. 4 (2006): 169–70. http://dx.doi.org/10.1177/155698450600100409.

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11

Qiu, Yingpeng, Yue Xiao, Kun Zhao, Liwei Shi, and Binyan Sui. "OP91 Health Technology Assessment On The Da Vinci Surgical System Using Real World Data In China." International Journal of Technology Assessment in Health Care 33, S1 (2017): 41. http://dx.doi.org/10.1017/s0266462317001647.

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INTRODUCTION:The Da Vinci surgical system is classified as a type “A” medical device in China; the procurement plan of which is regulated by the National Health and Family Planning Commission (NHFP). Between 2010 to 2015, there were thirty-four Da Vinci surgical robots purchased, and installed in thirty tertiary public hospitals across the country. In order to generate context-specific evidence and support further capital funding decisions, the NHFP commissioned a Health Technology Assessment (HTA) of Da Vinci surgical robots, with a focus on real use of the technology in those tertiary public
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12

Miyamura, Hironori, Yusuke Mizuno, Akiko Ohwaki, Mayuko Ito, Eiji Nishio, and Haruki Nishizawa. "Comparison of Single-port Robotic Surgery Using the Da Vinci SP Surgical System and Single-port Laparoscopic Surgery for Benign Indications." Gynecology and Minimally Invasive Therapy 14, no. 3 (2025): 229–33. https://doi.org/10.4103/gmit.gmit-d-24-00048.

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Abstract Objectives: Robot-assisted surgery has become popular in Japan, especially with the introduction of the da Vinci SP® surgical system, which is a significant advancement in minimally invasive surgery. The da Vinci SP® surgical system, which enables single-port surgery, has recently been developed. This study aims to compare the surgical outcomes of conventional single-port laparoscopic surgery and single-port robotic surgery using the da Vinci SP surgical system. Materials and Methods: We included 23 patients who underwent single-port robot-assisted total hysterectomy (SP-RAH) for uter
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13

Т.А., Комкина, та Яркин А.П. "Особенности развития и распространения медицинской робототехники (на примере роботизированных хирургических систем)". Концепции, № 1(38) (15 вересня 2019): 17–26. http://dx.doi.org/10.34705/ko.2019.12.16.002.

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В работе проведен анализ мирового рынка медицинских роботов, с выделением наиболее быстро растущего направления хирургических роботизированных систем, обусловленного в настоящее время спросом на минимально инвазивные операции. Выделены поколения хирургической системы da Vinci, которая является доминирующей на мировом рынке медицинской хирургической робототехники. В работе также проведен анализ динамики основных показателей деятельности компании Intuitive и особенностей распространения хирургической системы da Vinci по странам The paper analyzes the global market for medical robots, highlightin
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14

Papoyan, A. O., M. F. Urmantsev, and V. N. Pavlov. "Comparison of Da Vinci XI and Da Vinci SI Surgical Systems in Robot-Assisted Radical Prostatectomy." Creative surgery and oncology 14, no. 4 (2024): 303–8. https://doi.org/10.24060/2076-3093-2024-14-4-303-308.

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Introduction. Robot-assisted radical prostatectomy is considered to be the “gold standard” for the radical treatment of prostate cancer, achieving excellent oncological outcomes with a low incidence of complications.Aim. To analyze and compare the efficiency of Da Vinci Xi and Da Vinci Si surgical systems applied in performing robot-assisted radical prostatectomy. Materials and methods. 165 patients were divided into two groups: Xi-group (n = 77) and Si-group (n = 88). The perioperative characteristics and oncological outcomes were analyzed and compared.Results. The demographic, clinical, and
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15

McLeod, Ian K., Eric A. Mair, and Patrick C. Melder. "Potential Applications of the da Vinci Minimally Invasive Surgical Robotic System in Otolaryngology." Ear, Nose & Throat Journal 84, no. 8 (2005): 483–87. http://dx.doi.org/10.1177/014556130508400810.

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Anatomic constraints and instrumentation design characteristics have limited the exploitation of endoscopic surgery in otolaryngology. The move toward less invasive and less morbid procedures has paved the way for the development and application of robotic and computer-assisted systems in surgery. Surgical robotics allows for the use of new instrumentation in our field. We review the operative advantages, limitations, and possible surgical applications of the da Vinci Surgical System in otolaryngology. In the laboratory setting, we explored the setup and use of the da Vinci system in porcine a
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16

Zhou, Jin-Cai, Wu-Ping Wang, Shu-Qiang Wu, Jia-Lin Wang, and Wen-Hai Li. "Clinical Efficacy of Thoracoscopic Surgery with the da Vinci Surgical System versus Video-Assisted Thoracoscopic Surgery for Lung Cancer." Journal of Oncology 2022 (June 8, 2022): 1–6. http://dx.doi.org/10.1155/2022/5496872.

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Objective. To assess the clinical efficacy of thoracoscopic surgery with the da Vinci surgical system versus video-assisted thoracoscopic surgery (VATS) for lung cancer. Methods. From August 2019 to December 2020, 193 patients with lung cancer assessed for eligibility scheduled for surgery in our hospital were recruited and assigned at a ratio of 1 : 1 to receive VATS (control group) or thoracoscopic surgery with the da Vinci surgical system (research group). The primary measurement is the clinical efficacy of the two surgical modalities. Results. The baseline features of the research group we
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17

Kim, Jong Mi, Yoon Hee Lee, Gun Oh Chong, Sae Rom Lee, and Dae Gy Hong. "Comparison of Multi- and Single-Site Robotic Myomectomy Using the Da Vinci® SP Surgical System: A Propensity Score Matching Analysis." Journal of Clinical Medicine 11, no. 23 (2022): 6905. http://dx.doi.org/10.3390/jcm11236905.

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Objective: This study aimed to compare the surgical outcomes between robotic multi-site myomectomy (RMSM) and robotic single-site myomectomy (RSSM), using the da Vinci® SP surgical system and perform propensity score matching analysis to ensure inter-group comparability. Methods: This retrospective study included 105 patients who underwent either three-incision RMSM or RSSM using the da Vinci® SP surgical system. We retrospectively reviewed and compared surgical outcomes using 1:1 propensity score matching. Results: After 1:1 propensity score matching, there were no differences in the total op
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18

Lee, John Y. K., Bert W. O'Malley, Jason G. Newman, et al. "Transoral robotic surgery of craniocervical junction and atlantoaxial spine: a cadaveric study." Journal of Neurosurgery: Spine 12, no. 1 (2010): 13–18. http://dx.doi.org/10.3171/2009.7.spine08928.

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Object The goal of this study was to determine the potential role and current limitations of the da Vinci surgical robot in transoral decompression of craniocervical junction (CCJ). Methods The da Vinci Surgical System was used in 2 cadaver heads with neck and clavicles intact. Both neurosurgeons and otolaryngologists familiar with the open microscopic procedure, as well as the transoral robotic surgical procedure, undertook dissection and decompression of the CCJ. Results The robotic system provided superb illumination and 3D depth perception even several centimeters deep to the posterior oro
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19

Broeders, Ivo A. M. J., and Jelle Ruurda. "Robotics revolutionizing surgery: the Intuitive Surgical “Da Vinci” system." Industrial Robot: An International Journal 28, no. 5 (2001): 387–92. http://dx.doi.org/10.1108/eum0000000005845.

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20

Talamini, Mark A. "SAGES Assessment on the da Vinci® Surgical System." Surgical Endoscopy 30, no. 3 (2016): 803–4. http://dx.doi.org/10.1007/s00464-015-4718-4.

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McLeod, Ian K., and Patrick C. Melder. "Da Vinci Robot-Assisted Excision of a Vallecular Cyst: A Case Report." Ear, Nose & Throat Journal 84, no. 3 (2005): 170–72. http://dx.doi.org/10.1177/014556130508400315.

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The da Vinci Surgical System is a new and exciting entrant into the field of robotic technology. This system is undergoing considerable research and is being practically applied in general surgery, cardiothoracic surgery, urology, and gynecology. We have previously described our experience with the da Vinci system in the laboratory setting, and we have reviewed its potential applications in otolaryngology. Here we present a case report of the first da Vinci-assisted excision of a vallecular cyst in a human. Although we initially encountered some difficulties in the setup, we were able to perfo
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Joo, Oh Young, Seung Yong Song, Hyung Seok Park, and Tai Suk Roh. "Single-port robot-assisted prosthetic breast reconstruction with the da Vinci SP Surgical System: first clinical report." Archives of Plastic Surgery 48, no. 2 (2021): 194–98. http://dx.doi.org/10.5999/aps.2020.01557.

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Robot-assisted nipple-sparing mastectomy with immediate reconstruction is currently performed in an attempt to seek smaller and indistinct incisions. Robotic surgery system has been evolving under the concept of minimal invasive technique which is a recent trend in surgery. One of the latest version is the da Vinci SP Surgical System (Intuitive Surgical). In this report, we will share our experiences. Two patients underwent robot-assisted nipple-sparing mastectomy, each followed by immediate robot-assisted expander insertion and prepectoral direct-to-implant breast reconstruction, respectively
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Hong, Wei-Chen, Jui-Chang Tsai, Steven D. Chang, and Jonathan M. Sorger. "Robotic Skull Base Surgery via Supraorbital Keyhole Approach." Neurosurgery 72, suppl_1 (2013): A33—A38. http://dx.doi.org/10.1227/neu.0b013e318270d9de.

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Abstract BACKGROUND: The supraorbital keyhole approach has been used in anterior skull base tumor and aneurysm surgery. However, there are debates regarding the safety and limitations of this kind of approach. OBJECTIVE: To determine the feasibility and potential benefits of surgical robotic technology in minimally invasive neurosurgery. METHODS: Two fresh cadaver heads were studied with the da Vinci Surgical System with 0° and 30° stereoscopic endoscopes to visualize neuroanatomy. The ability of the system to suture and place clips under the keyhole approach was tested. RESULTS: The da Vinci
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Schraibman, Vladimir, Marina Gabrielle Epstein, Gabriel Naman Maccapani, and Antônio Luiz de Vasconcellos Macedo. "Single-port robotic cholecystectomy. Initial and pioneer experience in Brazil." Einstein (São Paulo) 13, no. 4 (2015): 607–10. http://dx.doi.org/10.1590/s1679-45082015rc3275.

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The technique of a single-port laparoscopy was developed over the last years as an attempt to lower surgical aggression and improve the aesthetic results of the minimally invasive surgery. A new robotic platform used with the da Vinci® Robotic System Single-Site System® (Intuitive Surgical, Sunnyvale, California, United States) was recently launched on the global market and is still not documented in Brazil. The authors report on the first four robotic single-port cholecystectomies performed with this da Vinci® Robotic System in Brazil.
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Watanabe, Go. "Successful Intracardiac Robotic Surgery Initial Results from Japan." Innovations: Technology and Techniques in Cardiothoracic and Vascular Surgery 5, no. 1 (2010): 48–50. http://dx.doi.org/10.1097/imi.0b013e3181c46db6.

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Objective The purpose of this study is to report our 2-year experience of performing endoscopic intracardiac procedures using the da Vinci Surgical System. Our teams at Kanazawa University and Tokyo Medical University groups began using the da Vinci Surgical System (Intuitive Surgical, Inc, Sunnyvale, CA) in 2005. This series represents the first Japanese application of robotic technology for totally endoscopic open-heart surgery. Methods From January 2008 to February 2009, 10 patients (mean age: 46.8 ± 16.3 years, 70% women) underwent endoscopic atrial septal defect closure and resection of t
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Rao, Ranjit, Rishi Nayyar, S. Panda, and Ashok K. Hemal. "Surgical techniques: robotic bladder diverticulectomy with the da Vinci-S surgical system." Journal of Robotic Surgery 1, no. 3 (2007): 217–20. http://dx.doi.org/10.1007/s11701-007-0030-1.

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27

Kallingal, George J. S., Sanjaya Swain, Fadi Darwiche, et al. "Robotic Partial Nephrectomy with the Da Vinci Xi." Advances in Urology 2016 (2016): 1–5. http://dx.doi.org/10.1155/2016/9675095.

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Purpose.The surgical expertise to perform robotic partial nephrectomy is heavily dependent on technology. The Da Vinci Xi (XI) is the latest robotic surgical platform with significant advancements compared to its predecessor. We describe our operative technique and experience with the XI system for robotic partial nephrectomy (RPN).Materials and Methods.Patients with clinical T1 renal masses were offered RPN with the XI. We used laser targeting, autopositioning, and a novel “in-line” port placement to perform RPN.Results.15 patients underwent RPN with the XI. There were no intraoperative compl
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Grimminger, Peter Philipp, Pieter Christiaan van der Sluis, Hubert Stein, Hauke Lang, Richard van Hillegersberg, and Jan-Hendrik Egberts. "Feasibility of Transcervical Robotic-Assisted Esophagectomy (TC-RAMIE) in a Cadaver Study—A Future Outlook for an Extrapleural Approach." Applied Sciences 9, no. 17 (2019): 3572. http://dx.doi.org/10.3390/app9173572.

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In recent years, the evolution of advanced robotic medical systems has increased rapidly. These technical developments have led to advanced robotic systems, such as the da Vinci Xi, which allows superior controlled complex procedures and innovative surgical strategies. In esophageal surgery, the robotic-assisted minimally invasive esophagectomy (RAMIE) procedure is being developed and carried out with increasing frequency at centers worldwide. Recently, a new single port robotic system was introduced (da Vinci Single Port (SP)), which may allow for the exploration of new routes, such as transc
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Haruki, Tomohiro, and Hiroshige Nakamura. "The TilePro™ function of the da Vinci Surgical System." ASVIDE 5 (October 2018): 837. http://dx.doi.org/10.21037/asvide.2018.837.

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Yoshino, Ichiro, Makoto Hashizume, Mitsuo Shimada, et al. "Thoracoscopic thymomectomy with the da Vinci computer-enhanced surgical system." Journal of Thoracic and Cardiovascular Surgery 122, no. 4 (2001): 783–85. http://dx.doi.org/10.1067/mtc.2001.115231.

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Lim, Susan M. L., Cheng K. Kum, and Foong L. Lam. "Nerve-sparing Axillary Dissection Using the da Vinci Surgical System." World Journal of Surgery 29, no. 10 (2005): 1352–55. http://dx.doi.org/10.1007/s00268-005-7902-1.

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Mucksavage, Phillip, David C. Kerbl, and Jason Y. Lee. "The da Vinci® Surgical System Overcomes Innate Hand Dominance." Journal of Endourology 25, no. 8 (2011): 1385–88. http://dx.doi.org/10.1089/end.2011.0093.

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Suzuki, Shigeyuki, Naoki Suzuki, Makoto Hashizume, et al. "Tele-training simulation for the surgical robot system “da Vinci”." International Congress Series 1268 (June 2004): 86–91. http://dx.doi.org/10.1016/j.ics.2004.03.160.

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Kim, Hyung Sun, and Jin Hong Lim. "Navigating the Intricacies of Robotic Pylorus-Preserving Pancreaticoduodenectomy Using the da Vinci SP (Single Port) System." Journal of Clinical Medicine 14, no. 9 (2025): 3193. https://doi.org/10.3390/jcm14093193.

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Background: Robot-assisted pylorus-preserving pancreaticoduodenectomy (RPPPD) has been increasingly adopted, leveraging the advantages of robotic technology. RPPPD is rarely performed using the da Vinci SP system. In this study, we address the technical issues encountered during the early experiences with robotic pylorus-preserving pancreaticoduodenectomy (RPPPD) using the da SP Vinci system and propose effective solutions. Method: We retrospectively analyzed the outcomes of seven patients who underwent RPPPD using the da Vinci SP system. The primary technical challenges included limited instr
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Pavlov, V. N., R. I. Safiullin, R. R. Bakiev, R. F. Gilmanova, and M. F. Urmantsev. "Robot-assisted removal of the orbital tumor (from practice)." Head and Neck Tumors (HNT) 9, no. 4 (2020): 80–84. http://dx.doi.org/10.17650/2222-1468-2019-9-4-80-84.

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The implementation of robotic surgery, in particular the da Vinci surgical system, is one of the biggest breakthroughs in surgery since the invention of anesthesia, and represents the most significant achievement in minimally invasive surgery of this decade. If the use of the da Vinchi robotic system in pelvic surgery has long been the gold standard, the use of this system in surgery of the base of the skull and sinuses is quite rare and is currently more experimental. Due to the lack of description in the domestic and foreign literature, it seems interesting to us to demonstrate the clinical
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Senapati, Sangeeta, and Arnold P. Advincula. "Surgical techniques: robot-assisted laparoscopic myomectomy with the da Vinci® surgical system." Journal of Robotic Surgery 1, no. 1 (2007): 69–74. http://dx.doi.org/10.1007/s11701-007-0014-1.

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Matthews, Catherine A. "Surgical techniques: robot-assisted laparoscopic colposacropexy with the da Vinci® surgical system." Journal of Robotic Surgery 3, no. 1 (2009): 35–39. http://dx.doi.org/10.1007/s11701-009-0125-y.

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38

Advincula, A. P. "Surgical techniques: robot-assisted laparoscopic hysterectomy with the da Vinci® surgical system." International Journal of Medical Robotics and Computer Assisted Surgery 2, no. 4 (2006): 305–11. http://dx.doi.org/10.1002/rcs.111.

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39

Shin, Hye Rim, Keunchul Lee, Hyeong Won Yu, et al. "Comparison of Perioperative Outcomes Using the da Vinci S, Si, X, and Xi Robotic Platforms for BABA Robotic Thyroidectomy." Medicina 57, no. 10 (2021): 1130. http://dx.doi.org/10.3390/medicina57101130.

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Background and Objectives: Robotic thyroidectomy via the bilateral axillo-breast approach (BABA), first introduced in Korea in 2008, has become a standard method of thyroid removal worldwide. The introduction of robotic surgical systems has enabled more patients to benefit from BABA robotic thyroidectomy, with good postoperative and excellent cosmetic results. To date, no studies have compared the benefits of the four currently available da Vinci robotic systems (S, Si, X, and Xi) for BABA robotic thyroidectomy. To determine the da Vinci model most suitable for BABA robotic thyroidectomy, the
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Shin, Myeong Ho, Sun Min Lee, Hilal Ozer Hwang, and Jin Wook Yi. "Single-Port Robotic Areolar Thyroidectomy: How I Do It." Journal of Surgical Innovation and Education 1, no. 1 (2024): 18–21. http://dx.doi.org/10.69474/jsie.2024.00052.

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With the recent development of the da Vinci Single Port (SP) robotic surgical system, new surgical methods applying the da Vinci SP in thyroid surgery are being reported. We first reported a method known as single-port robotic areolar (SPRA) thyroidectomy in 2023, and we performed more than 100 SPRA thyroidectomies in a year. SPRA is a more minimally invasive method than the existing bilateral axillary breast approach method, as the subcutaneous flap area is reduced by more than 50%. Herein, we present a step-by-step description of the method of SPRA thyroidectomy.
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41

Miranda, Giuseppe, Simone Scarcella, Carmine Franzese, et al. "Multivisceral combined robot-assisted surgery: Single docking partial nephrectomy and cholecystectomy." Il Giornale di Chirurgia - Journal of the Italian Association of Hospital Surgeons 43, no. 3 (2023): e29. http://dx.doi.org/10.1097/ia9.0000000000000029.

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We present a case of robot-assisted combined partial nephrectomy and robot-assisted cholecystectomy in a 71-year-old male patient diagnosed with a lower solid renal mass, identified during a regular oncological follow-up for non-Hodgkin’s lymphoma, and suffering of chronic cholecystitis due to a concomitant gall bladder stone. We performed both procedures during a single operative session, using a modified trocar configuration with Da Vinci-Xi Robotic Surgical System (Intuitive Surgical, Sunnyvale, California) Platform that allowed the performance of both surgeries with a total blood loss of 1
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Togami, Shinichi, Nozomi Furuzono, Yusuke Kobayashi, et al. "Comparative Analysis of da Vinci® Xi and hinotori™ SRS Robot-Assisted Surgery Systems for Gynecologic Disorders: A Retrospective Study." Medicina 60, no. 12 (2024): 2014. https://doi.org/10.3390/medicina60122014.

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Background and Objectives: This study aims to evaluate and compare the safety and efficacy of the da Vinci® Xi and hinotori™ SRS robot-assisted surgical systems for gynecologic disorders. Materials and Methods: We conducted a retrospective study of 401 cases (43 benign uterine tumors; 88 pelvic organ prolapses; 270 low-risk endometrial cancers) of robot-assisted surgery performed at Kagoshima University Hospital between January 2017 and October 2024. Surgical factors such as the operative time, blood loss, and complication rates were analyzed and compared between the da Vinci® Xi (332 cases) a
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Tinka, Domonkos, and Zsolt Jenő Szepesváry. "Precision surgery—The introduction of the da Vinci Robotic Surgical System in Hungary." Journal of Infrastructure, Policy and Development 9, no. 1 (2025): 9973. https://doi.org/10.24294/jipd9973.

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Surgical robots have been utilized for approximately three decades, primarily in high-income countries. In this paper, we focus on the experiences surrounding the introduction in Hungary of a specific robotic system originating from the United States, the da Vinci Surgical System. Manufactured and distributed by the American company Intuitive since 1995, this surgical system has been used globally in over ten million surgical procedures, with around 60,000 specialists trained to operate it. In Hungary, the robot system is distributed by the Sofmedica healthcare group. Besides Hungary, the comp
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44

Tarui, Tatsuya, Norihiko Ishikawa, and Go Watanabe. "A Novel Robotic Bilateral Internal Mammary Artery Harvest Using Double Docking Technique for Coronary Artery Bypass Grafting." Innovations: Technology and Techniques in Cardiothoracic and Vascular Surgery 12, no. 1 (2017): 74–76. http://dx.doi.org/10.1097/imi.0000000000000331.

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da Vinci Surgical System (da Vinci) enabled port access for internal mammary arteries (IMA) harvesting. However, bilateral IMA (BIMA) harvesting is difficult when performed on single side. We developed a novel technique of double docking the da Vinci by transpositioning from the left side to the right and examined the feasibility. Twelve patients underwent BIMA harvesting using the double-docking technique. First, the da Vinci was set on the patient's left side for the right IMA harvesting. Afterward, the da Vinci was undocked and transpositioned from the patient's left side to the right side.
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45

Semikolenova, V. A., A. A. Andreev, A. Yu Laptiyova, and A. A. Glukhov. "Modern minimally invasive technologies in gynecological practice." Siberian Medical Review 4 (2022): 39–45. http://dx.doi.org/10.20333/25000136-2022-4-39-45.

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Abstract. A comparison of surgical techniques (SILS, NOTES, Da Vinci robotic system, 3D modeling, Radius Surgical System) showed that they will provide endovideosurgery with new ways of performing surgical interventions in the near future. The aim of the research. Conducting a comparative analysis of minimally invasive surgical methods of treatment used in modern gynecological practice, as well as identifying their advantages and disadvantages, indications and contraindications for use, possible complications. Material and methods. A review of the data in PubMed, eLibrary, Cyberleninka, Scopus
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Tae, Kyung. "Transoral robotic thyroidectomy using the da Vinci single-port surgical system." Gland Surgery 9, no. 3 (2020): 614–16. http://dx.doi.org/10.21037/gs.2020.03.37.

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Monji, Keisuke, and Masatoshi Eto. "Robotic Surgery in Urology: Effectiveness of da Vinci®Surgical System." Journal of the Robotics Society of Japan 39, no. 3 (2021): 235–37. http://dx.doi.org/10.7210/jrsj.39.235.

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Salkini, MohamadW, Basmah Al Tinawi, and Morris Jessop. "Utilizing da vinci® surgical system to treat challenging urinary stones." Urology Annals 11, no. 3 (2019): 304. http://dx.doi.org/10.4103/ua.ua_97_18.

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Amore, Dario, Roberto Scaramuzzi, Davide Di Natale, and Carlo Curcio. "Surgical excision of extensive thymoma using the da Vinci robot system." ASVIDE 5 (2018): 093. http://dx.doi.org/10.21037/asvide.2018.093.

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Garcia, Olga, and Constanze Rayhrer. "Surgical management of Chilaiditi syndrome with da Vinci® robotic system." International Journal of Surgery Case Reports 41 (2017): 450–52. http://dx.doi.org/10.1016/j.ijscr.2017.10.066.

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