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轴突分支处的差异传导。II. 理论基础。

Differential conduction at axonal bifurcations. II. Theoretical basis.

作者信息

Stockbridge N

机构信息

Department of Surgery, Mackenzie Health Sciences Centre, University of Alberta, Edmonton, Canada.

出版信息

J Neurophysiol. 1988 Apr;59(4):1286-95. doi: 10.1152/jn.1988.59.4.1286.

Abstract
  1. Numerical methods are employed to describe unbranched and branched axons like those employed in the previous paper (13). The model axon consists of a set of conical-section membrane patches having identical Hodgkin-Huxley (6) properties and which are connected by a finite-difference approximation to the cable equation (7). 2. Frequency-dependent differential conduction is shown to occur in both unbranched and branched axons in the model, much as observed experimentally. 3. The effect is shown to occur when one limb is electrically shorter than another and results from differences in the way in which axial current entering such branches is distributed between membrane area near the bifurcation and membrane area far away.
摘要
  1. 采用数值方法来描述无分支和有分支的轴突,就如同前一篇论文(13)中所采用的方法一样。模型轴突由一组具有相同霍奇金 - 赫胥黎(6)特性的锥形截面膜片组成,这些膜片通过对电缆方程(7)的有限差分近似进行连接。2. 模型显示,在无分支和有分支的轴突中都会出现频率依赖性差异传导,这与实验观察结果非常相似。3. 当一个分支在电学上比另一个分支短时,就会出现这种效应,这是由于进入此类分支的轴向电流在分叉附近的膜面积和远处的膜面积之间分配方式的差异所导致的。

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