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神经冲动编码过程中涉及的电过程。

Electrical processes involved in the encoding of nerve impulses.

作者信息

Fohlmeister J

出版信息

Biol Cybern. 1980;36(2):103-8. doi: 10.1007/BF00361078.

Abstract

A mechanism for impulse encoding is advanced for those neurones whose impulse trigger zone membrane is more excitable than the general axonal membrane. Electrical communication between an electrotonically small patch of highly excitable membrane and neighboring membrane places the control of membrane potential - in varying degree - to the larger membrane area throughout the interspike intervals. That control is relinquished to the trigger membrane near the time of action potential initiation in a natural fashion. Model calculations demonstrate that this mechanism can lead to a dramatic lowering of the minimum stable firing frequency of tonic neurons, and, additionally influence the shape of the stimulus - versus - impulse frequency curve. The results are compared with the behavior of the slowly adapting stretch receptor neuron of the crayfish.

摘要

对于那些冲动触发区膜比一般轴突膜更易兴奋的神经元,提出了一种冲动编码机制。一小片电紧张性的高兴奋性膜与相邻膜之间的电通讯,在不同程度上使膜电位的控制在峰间期转移到更大的膜面积上。在动作电位起始时,这种控制以自然的方式交还给触发膜。模型计算表明,这种机制可导致紧张性神经元的最小稳定放电频率显著降低,并且还会影响刺激与冲动频率曲线的形状。将这些结果与小龙虾的慢适应性牵张感受器神经元的行为进行了比较。

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