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人体周围神经病变的微电极研究。第1部分。对单个分级刺激的反应。

A micro-electrode study of peripheral neuropathy in man. Part 1. Responses to single graded stimuli.

作者信息

Mackenzie R A, Skuse N F, Lethlean A K

出版信息

J Neurol Sci. 1977 Nov;34(2):157-74. doi: 10.1016/0022-510x(77)90065-x.

Abstract

Multi-unit micro-electrode recording were obtained from sensory fascicles of the sural and median nerves of 12 control subjects and of 28 patients with peripheral neuropathy. Spontaneous activity and mass responses to mechanical and electrical stimuli were examined. Mechanoreceptor function appeared normal but there was a reduced number of responsive receptors in peripheral neuropathy. The electrical activation threshold of nerve fibres of all conduction velocities was increased in neuropathy and a greater number of fibres needed to be activated for preception to occur. Clinical sensory impairment was associated with a reduction in size of the initial compound action potential of the maximal evoked neurogram and with dispersion of fibre responses. Pathological slowing of fibre conduction velocity was demonstrated in demyelinating neuropathy but in most cases of axomal degeneration the changes in velocity could have been due either to a reduced number of fast conducting fibres, or to conduction block. No changes were observed in C-fibre activity in these patients.

摘要

对12名对照受试者以及28名患有周围神经病变的患者的腓肠神经和正中神经感觉束进行了多单位微电极记录。检测了自发活动以及对机械和电刺激的群体反应。机械感受器功能似乎正常,但周围神经病变中反应性感受器的数量减少。在神经病变中,所有传导速度的神经纤维的电激活阈值均升高,并且需要激活更多数量的纤维才能产生感觉。临床感觉障碍与最大诱发神经电图初始复合动作电位的大小减小以及纤维反应的离散有关。在脱髓鞘性神经病变中证实了纤维传导速度的病理性减慢,但在大多数轴索性变性病例中,速度变化可能是由于快速传导纤维数量减少或传导阻滞所致。在这些患者中未观察到C纤维活动的变化。

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