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一种通过外部施加电场使神经元极化的模型。

A model for the polarization of neurons by extrinsically applied electric fields.

作者信息

Tranchina D, Nicholson C

出版信息

Biophys J. 1986 Dec;50(6):1139-56. doi: 10.1016/S0006-3495(86)83558-5.

Abstract

A model is presented for the subthreshold polarization of a neuron by an applied electric field. It gives insight into how morphological features of a neuron affect its polarizability. The neuronal model consists of one or more extensively branched dendritic trees, a lumped somatic impedance, and a myelinated axon with nodes of Ranvier. The dendritic trees branch according to the 3/2-power rule of Rall, so that each tree has an equivalent cylinder representation. Equations for the membrane potential at the soma and at the nodes of Ranvier, given an arbitrary specified external potential, are derived. The solutions determine the contributions made by the dendritic tree and the axon to the net polarization at the soma. In the case of a spatially constant electric field, both the magnitude and sign of the polarization depend on simple combinations of parameters describing the neuron. One important combination is given by the ratio of internal resistances for longitudinal current spread along the dendritic tree trunk and along the axon. A second is given by the ratio between the DC space constant for the dendritic tree trunk and the distance between nodes of Ranvier in the axon. A third is given by the product of the electric field and the space constant for the trunk of the dendritic tree. When a neuron with a straight axon is subjected to a constant field, the membrane potential decays exponentially with distance from the soma. Thus, the soma seems to be a likely site for action potential initiation when the field is strong enough to elicit suprathreshold polarization. In a simple example, the way in which orientation of the various parts of the neuron affects its polarization is examined. When an axon with a bend is subjected to a spatially constant field, polarization is focused at the bend, and this is another likely site for action potential initiation.

摘要

本文提出了一个关于外加电场作用下神经元亚阈值极化的模型。该模型有助于深入了解神经元的形态特征如何影响其极化率。神经元模型由一个或多个广泛分支的树突树、一个集中的体细胞阻抗以及一个带有郎飞结的有髓轴突组成。树突树根据拉尔的3/2幂律分支,因此每棵树都有一个等效圆柱体表示。推导了在给定任意指定外部电位的情况下,体细胞和郎飞结处膜电位的方程。这些解确定了树突树和轴突对体细胞处净极化的贡献。在空间恒定电场的情况下,极化的大小和符号都取决于描述神经元的参数的简单组合。一个重要的组合由沿树突树主干和沿轴突纵向电流传播的内部电阻之比给出。第二个组合由树突树主干的直流空间常数与轴突中郎飞结之间的距离之比给出。第三个组合由电场与树突树主干的空间常数的乘积给出。当具有直轴突的神经元受到恒定场作用时,膜电位从体细胞开始随距离呈指数衰减。因此,当场强足以引发超阈值极化时,体细胞似乎是动作电位起始的一个可能部位。在一个简单的例子中,研究了神经元各部分的取向对其极化的影响方式。当具有弯曲的轴突受到空间恒定场作用时,极化集中在弯曲处,这也是动作电位起始的另一个可能部位。

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Theory of physiological properties of dendrites.树突的生理特性理论
Ann N Y Acad Sci. 1962 Mar 2;96:1071-92. doi: 10.1111/j.1749-6632.1962.tb54120.x.
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