Background: Recent advancements in the development of robotic devices increasingly draw the attention toward the concept of robotic microsurgery, as several systems tailored to open microsurgery are being introduced. This study describes the combined application of a novel microsurgical robot, the Symani, with a novel robotic microscope, the RoboticScope, for the performance of microvascular anastomoses in a two-center preclinical trial.
Methods: Six novices, residents, and experienced microsurgeons (n = 18) performed five anastomoses on 1.0-mm-diameter silicone vessels with a conventional versus combined robotic approach, resulting in 180 anastomoses. Microsurgical performance was evaluated, analyzing surgical time, subjective satisfaction with the anastomosis and robotic setup, anastomosis quality using the anastomosis lapse index score, microsurgical skills using the Structured Assessment of Microsurgery Skills score, and surgical ergonomics using the Rapid Entire Body Assessment score.
Results: All participants significantly improved their performance during the trial and quickly adapted to the novel systems. Surgical time significantly decreased, whereas satisfaction with the anastomosis and setup improved over time. The use of robotic systems was associated with fewer microsurgical errors and enhanced anastomosis quality. Especially novices demonstrated accelerated skill acquisition upon robotic assistance compared with conventional microsurgery. Moreover, upper extremity positioning was significantly improved. Overall, the robotic approach was subjectively preferred by participants.
Conclusions: The concept of robotic microsurgery holds great potential to improve precision and ergonomics in microsurgery. This two-center trial provides promising evidence for a steep learning curve upon introduction of robotic microsurgery systems, suggesting further pursuit of their clinical integration.
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http://dx.doi.org/10.1097/GOX.0000000000005775 | DOI Listing |
Oral Oncol
January 2025
Department of Otolaryngology - Head & Neck Surgery Foch Hospital Suresnes France; School of Medicine, UFR Simone Veil, Université Versailles Saint-Quentin-en-Yvelines (Paris Saclay University), 2 Av. de la Source de la Bièvre 78 180 Montigny-le-Bretonneux, France; Phonetics and Phonology Laboratory (UMR 7018 CNRS & Université Sorbonne nouvelle), Paris, France.
Objective: To compare the surgical, functional and oncological outcomes of Transoral Laser Microsurgery (TLM) and Transoral Robotic Surgery (TORS) for the treatment of supraglottic squamous cell carcinoma.
Study Design: Retrospective case series with prospective data.
Settings: Tertiary Academic Medical Center.
Brain Sci
December 2024
Department of Neurosurgery, ASST Ovest Milano Legnano Hospital, 20025 Legnano, Italy.
Robotic-assisted surgery has revolutionised modern medicine, enabling greater precision and control, particularly in microsurgical procedures. This systematic review evaluates the current state of robotic-assisted surgery across various specialties, focusing on four major robotic systems: Symani, Da Vinci, ZEUS, and MUSA. The review systematically analyses the effectiveness of these systems in performing vascular, lymphatic, and nervous anastomoses, comparing key metrics such as procedure time, success rates, and learning curves against manual techniques.
View Article and Find Full Text PDFJBI Evid Synth
January 2025
JBI, Faculty of Health and Medical Sciences, The University of Adelaide, Adelaide, SA, Australia.
Objective: Our aim is to determine the comparative effectiveness of unimodality organ preservation surgery versus radiotherapy on oncological and functional outcomes in patients with early hypopharyngeal cancer.
Introduction: Early hypopharyngeal cancer is difficult to detect and therefore rarely diagnosed, as patients are often asymptomatic. Radiotherapy is considered the main treatment, although this modality has been compared to the previously used open surgical approach, which may not reflect current surgical options.
J Robot Surg
January 2025
BG Trauma Center Ludwigshafen, Department for Plastic, Hand and Reconstructive Surgery, Department of Plastic Surgery for the Heidelberg University, Ludwig-Guttmann-Straße 13, 67071, Ludwigshafen, Germany.
Robot-assisted surgery represents a significant innovation in reconstructive microsurgery, providing enhanced precision and reduced surgeon fatigue. This study examines the integration of robotic assistance in a series of 85 consecutive robot-assisted microsurgical (RAMS) operations. It aims to evaluate changes in the integration of RAMS during the implementation phase in a single institution.
View Article and Find Full Text PDFBMC Oral Health
January 2025
Department of Endodontics, School of Stomatology, Capital Medical University, Beijing, China.
Background: Endodontic file fractures are common complications of root canal treatment, and requires removal via specialized techniques such as endodontic microsurgery when the file beyond the apical foramen. It is often challenging to precisely and minimally remove a fractured file. Recently the use of dental autonomous robotic system (ATR) has shown promise in precisely and minimally in dental surgery.
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