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使用网络分析程序对解剖学上复杂的神经元的电行为进行建模:被动膜

Modeling the electrical behavior of anatomically complex neurons using a network analysis program: passive membrane.

作者信息

Segev I, Fleshman J W, Miller J P, Bunow B

出版信息

Biol Cybern. 1985;53(1):27-40. doi: 10.1007/BF00355688.

Abstract

We describe the application of a popular and widely available electrical circuit simulation program called SPICE to modeling the electrical behavior of neurons with passive membrane properties and arbitrarily complex dendritic trees. Transient responses may be calculated at any location in the cell model following current, voltage or conductance perturbations at any point. A numbering method is described for binary trees which is helpful in transforming complex dendritic structures into a coded list of short cylindrical dendritic segments suitable for input to SPICE. Individual segments are modeled as isopotential compartments comprised of a parallel resistor and capacitor, representing the transmembrane impedance, in series with one or two core resistors. Synaptic current is modeled by a current source controlled by the local membrane potential and an "alpha-shaped" voltage, thus simulating a conductance change in series with a driving potential. Extensively branched test cell circuits were constructed which satisfied the equivalent cylinder constraints (Rall 1959). These model neurons were perturbed by independent current sources and by synaptic currents. Responses calculated by SPICE are compared with analytical results. With appropriately chosen model parameters, extremely accurate transient calculations may be obtained. Details of the SPICE circuit elements are presented, along with illustrative examples sufficient to allow implementation of passive nerve cell models on a number of common computers. Methods for modeling excitable membrane are presented in the companion paper (Bunow et al. 1985).

摘要

我们描述了一种广受欢迎且广泛可用的电路仿真程序SPICE在对具有被动膜特性和任意复杂树突状树的神经元电行为进行建模中的应用。在细胞模型的任何位置,在任何点施加电流、电压或电导扰动后,均可计算瞬态响应。本文描述了一种二叉树编号方法,该方法有助于将复杂的树突状结构转换为适合输入到SPICE的短圆柱形树突段编码列表。单个段被建模为等电位隔室,由一个并联电阻和电容组成,代表跨膜阻抗,与一个或两个核心电阻串联。突触电流由受局部膜电位和“α形”电压控制的电流源建模,从而模拟与驱动电位串联的电导变化。构建了满足等效圆柱体约束条件(拉尔,1959年)的广泛分支测试细胞电路。这些模型神经元受到独立电流源和突触电流的扰动。将SPICE计算的响应与分析结果进行比较。通过适当选择模型参数,可以获得极其精确的瞬态计算结果。本文介绍了SPICE电路元件的详细信息,以及足以在许多常见计算机上实现被动神经细胞模型的示例。兴奋性膜建模方法见配套论文(布诺等人,1985年)。

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