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人类感觉纤维阈值和传导速度的活动依赖性变化。

Activity-dependent variations in threshold and conduction velocity of human sensory fibers.

作者信息

Stöhr M

出版信息

J Neurol Sci. 1981 Jan;49(1):47-54. doi: 10.1016/0022-510x(81)90187-8.

Abstract

Activity-dependent changes in threshold with a sequential set of events (action potential, refractoriness, supernormal and subnormal period) can regularly be observed in sensory fibers of the human median nerve, the whole recovery cycle lasting for 120-200 ms in different subjects. Supernormality is probably due to an after-depolarization of the membrane potential and has its peak 5-8 ms after the conditioning pulse. The subsequent period of subnormal excitability results from a long-lasting hyperpolarization of the membrane and reaches its maximum 40-60 ms after the conditioning pulse. In contrast to some findings in slow-conducting fibers of different experimental animals, the fast-conducting fibers of the human median nerve do not reveal the phenomenon of supernormal conduction velocity.

摘要

在人类正中神经的感觉纤维中,可经常观察到阈值随一系列连续事件(动作电位、不应期、超常期和低常期)而发生的活动依赖性变化,在不同个体中,整个恢复周期持续120 - 200毫秒。超常期可能是由于膜电位的去极化后电位所致,其峰值出现在条件刺激脉冲后5 - 8毫秒。随后的低常期兴奋性是由膜的持久超极化引起的,在条件刺激脉冲后40 - 60毫秒达到最大值。与不同实验动物的慢传导纤维中的一些发现相反,人类正中神经的快传导纤维未表现出超常传导速度现象。

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