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通过端侧吻合术在不同神经之间进行协同运动神经纤维转移。

Synergistic motor nerve fiber transfer between different nerves through the use of end-to-side coaptation.

作者信息

Schmidhammer R, Nógrádi A, Szabó A, Redl H, Hausner T, van der Nest D G, Millesi H

机构信息

Austrian Cluster for Tissue Regeneration and Ludwig Boltzmann Institute for Experimental and Clinical Traumatology at the Research Center for Traumatology of the Austrian Workers' Compensation Board (AUVA), Vienna, Austria.

出版信息

Exp Neurol. 2009 Jun;217(2):388-94. doi: 10.1016/j.expneurol.2009.03.027. Epub 2009 Apr 2.

Abstract

End-to-end nerve repair is a widely used and successful experimental microsurgical technique via which a denervated nerve stump is supplied with reinnervating motor or sensory axons. On the other hand, questions are still raised as concerns the reliability and usefulness of the end-to-side coaptation technique. This study had the aim of the reinnervation of the denervated forearm flexor muscles in baboons through the use of an end-to-side coaptation technique and the synergistic action of the radial nerve. The median and ulnar nerves were transected, and the motor branch of the radial nerve supplying the extensor carpi radialis muscles (MBECR) was used as an axon donor for the denervated superficial forearm flexors. A nerve graft was connected to the axon donor nerve through end-to-side coaptation, while at the other end of the graft an end-to-end connection was established so as to reinnervate the motor branch of the forearm flexors. Electrophysiological investigations and functional tests indicated successful reinnervation of the forearm flexors and recovery of the flexor function. The axon counts in the nerve segments proximal (1038+/-172 S.E.M.) and distal (1050+/-116 S.E.M.) to the end-to-side coaptation site and in the nerve graft revealed that motor axon collaterals were given to the graft without the loss or appreciable misdirection of the axons in the MBECR nerve distal to the coaptation site. The nerve graft was found to contain varying, but satisfactory numbers of axons (269+/-59 S.E.M.) which induced morphological reinnervation of the end-plates in the flexor muscles. Accordingly, we have provided evidence that end-to-side coaptation can be a useful technique when no free donor nerve is available. This technique is able to induce limited, but still useful reinnervation for the flexor muscles, thereby producing a synergistic action of the flexor and extensor muscles which allows the hand to achieve a basic gripping function.

摘要

端到端神经修复是一种广泛应用且成功的实验性显微外科技术,通过该技术,失神经支配的神经残端可获得再支配的运动或感觉轴突。另一方面,端侧吻合技术的可靠性和实用性仍存在疑问。本研究旨在通过端侧吻合技术和桡神经的协同作用,使狒狒失神经支配的前臂屈肌重新获得神经支配。切断正中神经和尺神经,将支配桡侧腕伸肌的桡神经运动支(MBECR)作为失神经支配的前臂浅层屈肌的轴突供体。通过端侧吻合将神经移植物连接到轴突供体神经,而在移植物的另一端建立端到端连接,以便使前臂屈肌的运动支重新获得神经支配。电生理研究和功能测试表明前臂屈肌成功实现了神经再支配且屈肌功能得以恢复。在端侧吻合部位近端(1038±172标准误)和远端(1050±116标准误)的神经节段以及神经移植物中的轴突计数显示,运动轴突侧支进入移植物,而在吻合部位远端的MBECR神经中的轴突没有丢失或明显错向。发现神经移植物包含数量不等但足够的轴突(269±59标准误),这些轴突诱导了屈肌终板的形态学再支配。因此,我们提供了证据表明,在没有游离供体神经可用时,端侧吻合可以是一种有用的技术。该技术能够诱导有限但仍然有用的屈肌再支配,从而产生屈肌和伸肌的协同作用,使手能够实现基本的抓握功能。

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