Schäfer Benedikt, Bahm Jörg, Beier Justus P
From the Department of Plastic Surgery, Hand Surgery - Burn Center, University Hospital RWTH Aachen, Aachen, Germany.
Division for Plexus Surgery,University Hospital RWTH Aachen, Aachen, Germany.
Plast Reconstr Surg Glob Open. 2023 Aug 14;11(8):e5192. doi: 10.1097/GOX.0000000000005192. eCollection 2023 Aug.
Microsurgical demands in peripheral nerve surgery are increasing. Because of the development of multiple simultaneous selective nerve transfers, the transposition of very small nerves and even single fascicles has evolved. Coaptation of these increasingly smaller structures require high skills in microsurgical techniques. In addition, the surgical situs often has very limited access and is difficult to reach with conventional microsurgical options. Robot technology, the Symani Surgical System (Medical Microinstruments, S.p.A, Calci, Pisa, Italy), was used for epineural coaptation of three donor nerves (intercostal nerves 4-6) to the long thoracic nerve and the thoracodorsal nerve as recipient nerves in a patient with brachial plexus palsy. The coaptations could be carried out successfully with the microsurgical robot technology. In combination with a high-magnification (up to 26×) 3D-exoscope, the epineural sutures could be placed very precisely and accurately. Using this new microsurgical robotic system, successful coaptation of very small nerve structures is possible. This opens possibilities for the microsurgeon to carry out even finer, more targeted and more complex nerve transfers, including procedures in anatomical regions that are difficult to reach.
周围神经手术中的显微外科要求日益提高。由于多种同时进行的选择性神经移位技术的发展,极细神经甚至单束神经的移位术也得以发展。对这些越来越小的结构进行端端吻合需要高超的显微外科技术。此外,手术部位的操作空间往往非常有限,采用传统显微外科方法难以触及。在一名臂丛神经麻痹患者中,使用了机器人技术——Symani手术系统(意大利比萨卡尔奇市Medical Microinstruments, S.p.A公司),将三根供体神经(第4 - 6肋间神经)与作为受体神经的胸长神经和胸背神经进行神经外膜端端吻合。借助显微外科机器人技术,端端吻合得以成功完成。结合高放大倍数(高达26倍)的3D电子内窥镜,能够非常精确地放置神经外膜缝线。使用这种新型显微外科机器人系统,可以成功地对非常小的神经结构进行端端吻合。这为显微外科医生开展更精细、更有针对性且更复杂的神经移位手术创造了可能性,包括在难以到达的解剖区域进行手术。