McMorrow Liam A, Czarnecki Piotr, Reid Adam J, Tos Pierluigi
Blond McIndoe Laboratories, Division of Cell Matrix Biology and Regenerative Medicine, School of Biological Sciences, Faculty of Biology Medicine and Health, Manchester Academic Health Science Centre, University of Manchester, Manchester, UK.
Department of Plastic Surgery & Burns, Wythenshawe Hospital, Manchester University NHS Foundation Trust, Manchester Academic Health Science Centre, Manchester, UK.
J Hand Surg Eur Vol. 2024 Jun;49(6):698-711. doi: 10.1177/17531934241242002. Epub 2024 Apr 11.
From the first surgical repair of a nerve in the 6th century, progress in the field of peripheral nerve surgery has marched on; at first slowly but today at great pace. Whether performing primary neurorrhaphy or managing multiple large nerve defects, the modern nerve surgeon has an extensive range of tools, techniques and choices available to them. Continuous innovation in surgical equipment and technique has enabled the maturation of autografting as a gold standard for reconstruction and welcomed the era of nerve transfer techniques all while bioengineers have continued to add to our armamentarium with implantable devices, such as conduits and acellular allografts. We provide the reader a concise and up-to-date summary of the techniques available to them, and the evidence base for their use when managing nerve transection including current use and applicability of nerve transfer procedures.
从6世纪首次进行神经外科修复以来,周围神经外科领域不断取得进展;起初进展缓慢,但如今发展迅速。无论是进行一期神经缝合还是处理多处大的神经缺损,现代神经外科医生都有广泛的工具、技术和选择。手术设备和技术的不断创新使自体移植作为重建的金标准得以成熟,并迎来了神经移植技术的时代,与此同时,生物工程师不断用可植入装置,如导管和脱细胞同种异体移植物,来扩充我们的医疗手段。我们为读者提供了一份关于他们可用技术的简明且最新的总结,以及在处理神经横断时这些技术使用的证据基础,包括神经移植手术的当前应用情况和适用性。