From the Division of Plastic, Reconstructive and Microsurgery, CTO Careggi University Hospital.
Plast Reconstr Surg. 2023 May 1;151(5):1078-1082. doi: 10.1097/PRS.0000000000010108. Epub 2022 Dec 23.
Microsurgery has become standard of care for increasingly complex techniques in tissue harvest, replantation, reconstruction, allotransplantation, and supermicrosurgery on submillimetric vessels. As techniques become more challenging and are performed at smaller and smaller scale, there is greater potential application for robotic assistance in extreme motion scaling and tremor reduction.
The Symani Surgical System (Medical Microinstruments, S.p.A, Calci, Pisa, Italy), a robotic platform designed for microsurgery, was used in a robot-assisted microsurgical free flap reconstruction using a perforator-to-perforator flap technique. This procedure utilized robot-assisted anastomosis of an artery and vein.
The procedure was completed successfully, with vessels fully patent immediately following and 20 minutes after anastomosis. The flap was viable, no re-exploration of the anastomosis was necessary postoperatively, and no flap loss occurred.
This novel, dedicated robotic platform with wristed microsurgical instruments was shown to be feasible for carrying out robot-assisted anastomosis of veins and arteries less than 0.8 mm in diameter, in the domain of supermicrosurgery. The system has the potential to open the field of microsurgery to new clinicians and to facilitate new microsurgical applications that were previously rendered inaccessible by the limits of manual precision and physiological tremor.
显微外科已成为组织采集、再植、重建、同种异体移植和亚毫米血管超微血管吻合等日益复杂技术的标准治疗方法。随着技术变得越来越具有挑战性,并且在越来越小的规模上进行,机器人辅助在极端运动缩放和震颤减少方面具有更大的潜在应用。
Symani 手术系统(Medical Microinstruments,S.p.A,Calci,Pisa,意大利)是一种专为显微外科设计的机器人平台,用于使用穿支皮瓣技术进行机器人辅助游离皮瓣重建。该程序利用机器人辅助吻合动脉和静脉。
手术成功完成,吻合后即刻和 20 分钟后血管完全通畅。皮瓣存活,术后无需再次探查吻合口,也未发生皮瓣丢失。
这种新型专用机器人平台与腕式显微器械一起,可用于在超微血管领域进行直径小于 0.8 毫米的静脉和动脉的机器人辅助吻合。该系统有可能将显微外科领域扩展到新的临床医生,并促进以前由于手动精度和生理震颤限制而无法实现的新的显微外科应用。