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突触输入的空间和时间离散对突触电位时程的影响。

Effects of spatial and temporal dispersion of synaptic input on the time course of synaptic potentials.

作者信息

Walmsley B, Stuklis R

机构信息

Neural Research Laboratory, School of Anatomy, University of New South Wales, Kensington, Australia.

出版信息

J Neurophysiol. 1989 Apr;61(4):681-7. doi: 10.1152/jn.1989.61.4.681.

Abstract
  1. As part of the ongoing studies on the time course of single-fiber synaptic potentials recorded in spinal neurons, a theoretical analysis of the effects of spatial and temporal dispersion of synaptic input to a neuronal cable model was undertaken. 2. Results were obtained using a simple R-C soma, equivalent dendritic cylinder cable model of a neuron. Synaptic input was represented by a current injection at various points on the dendritic cable. 3. Spatial dispersion of multiple inputs to the cable model generally produced somatic transients with smooth time courses that could be closely matched by a transient generated at a single input location, usually with a different current time course. 4. Temporal dispersion, representing nonsynchronous activation of multiple synaptic contacts at the same electrotonic location, generally resulted in somatic transients with an increased rise-time and a corresponding small increase in the half-width. The somatic transient generated by these temporally dispersed inputs could usually be well matched by a single input at a different location. 5. Addition of temporal dispersion to a spatially dispersed input produced variable results in which the rise-times and half-widths of somatically recorded transients could be either increased or decreased. 6. It is concluded that a detailed knowledge of both the spatial and temporal properties of synaptic input is essential to the interpretation of single-fiber synaptic potentials. Previous results on the amplitude and time course of single-fiber synaptic potentials recorded in spinal neurons are discussed in light of the present observations.
摘要
  1. 作为对脊髓神经元中记录的单纤维突触电位时间进程进行的持续研究的一部分,对神经元电缆模型中突触输入的空间和时间离散效应进行了理论分析。2. 使用简单的R-C胞体、等效树突圆柱电缆模型神经元获得了结果。突触输入通过在树突电缆上的不同点注入电流来表示。3. 电缆模型中多个输入的空间离散通常产生具有平滑时间进程的体细胞瞬变,这些瞬变可以与在单个输入位置产生的瞬变紧密匹配,通常具有不同的电流时间进程。4. 时间离散表示在相同电紧张位置多个突触接触的非同步激活,通常导致体细胞瞬变的上升时间增加,半高宽相应地略有增加。这些时间离散输入产生的体细胞瞬变通常可以与不同位置的单个输入很好地匹配。5. 对空间离散输入添加时间离散会产生可变结果,其中体细胞记录的瞬变的上升时间和半高宽可能增加或减少。6. 得出的结论是,对突触输入的空间和时间特性的详细了解对于解释单纤维突触电位至关重要。根据目前的观察结果,讨论了先前关于脊髓神经元中记录的单纤维突触电位的幅度和时间进程的结果。

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