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一种慢性神经压迫的灵长类动物模型。

A primate model for chronic nerve compression.

作者信息

Mackinnon S E, Dellon A L, Hudson A R, Hunter D A

出版信息

J Reconstr Microsurg. 1985 Jan;1(3):185-95. doi: 10.1055/s-2007-1007073.

Abstract

Peripheral compression neuropathy is a common clinical entity but little human nerve material has been available for study. It has been difficult to develop an experimental model of chronic nerve compression which is reliable and reproducible, making it difficult to assess the various treatment modalities currently in use to manage this problem. In a recent study using a rat model, connective tissue and nerve fiber changes associated with chronic nerve compression were described by the authors. The present study expands this same model of chronic nerve compression to the multifascicular median nerve of the cynomolgus monkey, using this model to test whether or not current surgical treatment modalities for nerve entrapment will alter the course of chronic nerve compression. Using histologic and morphometric parameters, there did not appear to be a difference between nerves treated by decompression alone or by decompression and internal neurolysis. Total number of nerve fibers remained constant, as did axon size, but a demyelinating process was demonstrated which is a significant component of chronic nerve compression. Although the small number of experimental animals (7) makes precise evaluation of the clinical modalities impossible, the authors expect that further study of the multifascicular median nerve of the cynomolgus monkey will prove to be a useful source of future experimental evidence and will help to interpret the diverse therapeutic and operative techniques currently in use.

摘要

周围神经卡压性神经病是一种常见的临床病症,但可供研究的人体神经材料很少。很难建立一种可靠且可重复的慢性神经压迫实验模型,这使得评估目前用于处理该问题的各种治疗方式变得困难。在最近一项使用大鼠模型的研究中,作者描述了与慢性神经压迫相关的结缔组织和神经纤维变化。本研究将这种相同的慢性神经压迫模型扩展到食蟹猴的多束正中神经,用该模型来测试当前用于神经卡压的手术治疗方式是否会改变慢性神经压迫的进程。利用组织学和形态计量学参数,单纯减压治疗的神经与减压加内部神经松解治疗的神经之间似乎没有差异。神经纤维总数保持不变,轴突大小也是如此,但证实存在脱髓鞘过程,这是慢性神经压迫的一个重要组成部分。尽管实验动物数量较少(7只)使得无法对临床治疗方式进行精确评估,但作者预计,对食蟹猴多束正中神经的进一步研究将被证明是未来实验证据的一个有用来源,并将有助于解释目前使用的各种治疗和手术技术。

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