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神经化游离 VRAM 用于在肌肉耗竭区域产生肌电信号,以实现靶向肌肉再神经支配,从而实现直觉假体控制:一例报告。

Neurotized free VRAM used to create myoelectric signals in a muscle-depleted area for targeted muscle reinnervation for intuitive prosthesis control: A case report.

机构信息

Division of Plastic Surgery, Mayo Clinic, Rochester, Minnesota, USA.

Department of Plastic Surgery, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.

出版信息

Microsurgery. 2021 Sep;41(6):557-561. doi: 10.1002/micr.30722. Epub 2021 Feb 13.

Abstract

Targeted muscle reinnervation enables native muscles to send electromyographic signals to myoelectric receptors, which drive movements in a prosthesis. This system requires voluntary contracture of muscles for sequential control of powered prosthetic joints. This report describes a surgical solution for cases where the chest wall is depleted of muscle targets. A 13-year-old boy with left forequarter amputation and pectoralis major resection as a result of extended necrotizing facilities 8 years prior received a neurotized free Vertical Rectus Abdominus Mycocutaneous (VRAM) flap (28 × 10 cm) designed to produce myoelectric signals, reduce pain, and provide stability for prosthetic fitting. Five intercostal nerves from the VRAM were coapted to portions of the brachial plexus to create a myoelectric interface for targeted muscle reinnervation. The postoperative course was uneventful. At 39 months of follow-up, the patient gained control of the transferred VRAM and was able to operate a custom-fitted myoelectric prosthesis together with contraction of the ipsilateral infraspinatus muscle. The neurotized VRAM transfer created a neural interface in an area with depleted neuromuscular targets while decreasing pain and adding tissue bulk for proper prosthesis fitting. Such a surgical strategy may have applications in other areas of the body.

摘要

靶向肌肉神经再支配使原生肌肉能够向肌电感受器发送肌电图信号,从而驱动假肢运动。该系统需要肌肉的自愿收缩,以实现动力假肢关节的顺序控制。本报告介绍了一种针对胸壁肌肉靶组织缺失病例的手术解决方案。一位 13 岁男孩,8 年前因广泛坏死性筋膜炎进行了左前肩部截肢和胸大肌切除术,接受了神经化游离垂直腹直肌肌皮瓣(28×10cm)的移植,该手术旨在产生肌电信号、减轻疼痛并为假肢适配提供稳定性。将 5 根肋间神经与臂丛的部分神经进行吻合,以建立靶向肌肉神经再支配的肌电接口。术后过程顺利。在随访的 39 个月时,患者获得了对转移的 VRAM 的控制,并能够与同侧冈下肌收缩一起操作定制的肌电假肢。神经化 VRAM 转移在神经肌肉靶组织缺失的区域建立了神经接口,同时减轻了疼痛并增加了组织体积,以适应合适的假肢。这种手术策略可能在身体的其他部位有应用。

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