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动作电位在非均匀轴突区域的传播。

Propagation of action potentials in inhomogeneous axon regions.

作者信息

Ramón F, Joyner R W, Moore J W

出版信息

Fed Proc. 1975 Apr;34(5):1357-63.

PMID:1123091
Abstract

Described are studies of propagation of action potentials through inhomogenous axon regions through experiments performed on squid giant axons and by computer simulations. The initial speed of propagation of the action potential is dependent upon the stimulus waveform. For a rectangular pulse of current, the action potential travel initally at a high speed that declines over the distance, reaching a constant speed of propagation at about 1-5 resting length constants; this distance depends on the stimulus strength. additional experiments studied the effects of changing the axon diameter and of introducing a temperature step. It was found that the propagated action potential suffers profound modification in shape and velocity as it reaches the region of transition. In both cases, it was possible to obtain reflected action potentials. A region of increased effective diameter was produced experimentally in the squid giant axon by insertion of an axial wire as usually employed in voltage clamps. It was found that the action potential, at the axial wire tip region, undergoes shape changes similar to those obtained tn simulations of a region of increased diameter as in a junction with the axon and soma in motor neurons. It is conducluded that the gaint axon can be used to reproduce simple electrical behaviors in other structures.-Ramón, F., R. W. Joyner and J.W. Moore. Propagation of action potentials in inhomogeneous axon regions.

摘要

描述了通过对鱿鱼巨轴突进行实验以及通过计算机模拟来研究动作电位在不均匀轴突区域中的传播。动作电位的初始传播速度取决于刺激波形。对于矩形电流脉冲,动作电位最初以高速传播,该速度会随着距离下降,在大约1 - 5个静息长度常数处达到恒定传播速度;这个距离取决于刺激强度。额外的实验研究了改变轴突直径和引入温度阶跃的影响。发现传播的动作电位在到达过渡区域时其形状和速度会发生深刻变化。在这两种情况下,都有可能获得反射动作电位。通过插入通常用于电压钳的轴向导线,在鱿鱼巨轴突中实验性地产生了有效直径增加的区域。发现在轴向导线尖端区域,动作电位经历的形状变化类似于在模拟与运动神经元的轴突和胞体连接处直径增加的区域时所获得的变化。得出的结论是,巨轴突可用于重现其他结构中的简单电行为。 - 拉蒙,F.,R. W. 乔伊纳和J. W. 摩尔。动作电位在不均匀轴突区域中的传播。

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