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由同名I类神经冲动在单个人运动神经元中产生的突触后电位的特征。

Characteristics of postsynaptic potentials produced in single human motoneurons by homonymous group 1 volleys.

作者信息

Ashby P, Zilm D

出版信息

Exp Brain Res. 1982;47(1):41-8. doi: 10.1007/BF00235884.

Abstract

Changes in the firing probability of voluntarily activated human tibialis anterior motor units occurred when the muscle nerve was stimulated below the threshold of motoneuron axons. A prominent period of increased firing probability was considered to result from the group 1 composite EPSP. The rise time of this composite EPSP, estimated from the duration of the period of increased firing probability, was between 2 and 5 ms. One estimate of the relative amplitude of the EPSP was derived from the cross-correlation and tested by inserting synthetic EPSPs into a computer simulation of a rhythmically discharging neuron. A second estimate of the amplitude was obtained by delivering stimuli with various delays within the interspike interval to determine the position (as a percentage of the mean interspike interval) at which the postsynaptic potential was capable of bringing the membrane potential to threshold. The two estimates were in reasonable agreement. The largest of these EPSPs could bring the motoneuron to threshold after 39% of the elapsed interspike interval. The falling phase of the postsynaptic potential was explored by delivering double stimuli within the interspike interval to produce temporal summation. The duration of the falling phase, so tested, was between 5 and 20 ms. An attempt was made to deduce the general form of the trajectory representing the effective distance of an EPSP from threshold during the interspike interval from the alterations in the cross-correlation profile that occurred when motoneuron firing rate was voluntarily altered.

摘要

当在运动神经元轴突阈值以下刺激肌肉神经时,自主激活的人类胫前运动单位的放电概率会发生变化。放电概率增加的一个显著时期被认为是由1组复合兴奋性突触后电位(EPSP)引起的。根据放电概率增加时期的持续时间估计,该复合EPSP的上升时间在2到5毫秒之间。EPSP相对幅度的一种估计是通过互相关得出的,并通过将合成EPSP插入有节律放电神经元的计算机模拟中来进行测试。幅度的第二种估计是通过在峰间期内以不同延迟施加刺激来确定突触后电位能够使膜电位达到阈值的位置(占平均峰间期的百分比)而获得的。这两种估计结果相当一致。这些EPSP中最大的在经过39%的峰间期后可使运动神经元达到阈值。通过在峰间期内施加双刺激以产生时间总和来探究突触后电位的下降阶段。如此测试得到的下降阶段持续时间在5到20毫秒之间。人们试图从运动神经元放电频率自主改变时互相关曲线的变化中推断出代表峰间期内EPSP距阈值有效距离的轨迹的一般形式。

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