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首页> 外文期刊>Neural regeneration research >Delayed peripheral nerve repair: methods, including surgical 'cross-bridging' to promote nerve regeneration
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Delayed peripheral nerve repair: methods, including surgical 'cross-bridging' to promote nerve regeneration

机译:延迟性周围神经修复:包括外科“交叉桥接”在内的促进神经再生的方法

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Despite the capacity of Schwann cells to support peripheral nerve regeneration, functional recovery after nerve injuries is frequently poor, especially for proximal injuries that require regenerating axons to grow over long distances to reinnervate distal targets. Nerve transfers, where small fascicles from an adjacent intact nerve are coapted to the nerve stump of a nearby denervated muscle, allow for functional return but at the expense of reduced numbers of innervating nerves. A 1-hour period of 20 Hz electrical nerve stimulation via electrodes proximal to an injury site accelerates axon outgrowth to hasten target reinnervation in rats and humans, even after delayed surgery. A novel strategy of enticing donor axons from an otherwise intact nerve to grow through small nerve grafts (cross-bridges) into a denervated nerve stump, promotes improved axon regeneration after delayed nerve repair. The efficacy of this technique has been demonstrated in a rat model and is now in clinical use in patients undergoing cross-face nerve grafting for facial paralysis. In conclusion, brief electrical stimulation, combined with the surgical technique of promoting the regeneration of some donor axons to 'protect' chronically denervated Schwann cells, improves nerve regeneration and, in turn, functional outcomes in the management of peripheral nerve injuries.
机译:尽管雪旺氏细胞具有支持周围神经再生的能力,但神经损伤后的功能恢复通常较差,特别是对于需要再生轴突长距离生长以重新刺激远端靶标的近端损伤。神经转移可使邻近完整神经的小束束缚在附近失神经肌肉的神经残端上,从而使神经功能恢复,但以减少神经支配神经为代价。即使在延迟手术后,通过靠近损伤部位的电极进行的1小时20 Hz电神经刺激,也会加速轴突的生长,从而加快大鼠和人类的目标神经再生。诱使捐献者轴突从原本完整的神经通过小神经移植物(跨桥)生长到失神经支配的新策略,可促进延迟神经修复后轴突再生的改善。这项技术的功效已在大鼠模型中得到证实,目前正用于进行面神经移植治疗面部麻痹的患者中。总之,短暂的电刺激,结合促进某些供体轴突再生以“保护”慢性失神经的雪旺细胞的外科手术技术,可改善神经再生,进而改善周围神经损伤的治疗功能。

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