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Solutions for transients in arbitrarily branching cables: IV. Nonuniform electrical parameters.

机译:任意分支电缆中瞬态的解决方案:IV。电气参数不一致。

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摘要

Solutions for transients in arbitrarily branching passive cable neurone models with a soma are extended to models with nonuniform electrical parameters and multiple dendritic shunts. The response to an injected current can again be represented as an infinite series of exponentially decaying components with system time constants obtained from the roots of a recursive transcendental equation. The reciprocity relations and global parameter dependencies are the same as for uniform models. Infinitely many "raw" electro-morphological models map onto a given "core" electrotonic model; local as well as global raw parameter trade-offs are now possible. The solutions are illustrated by means of biologically relevant examples: (i) the effects of nonuniform electrical parameters in a two-cylinder + soma cortical pyramidal cell model, (ii) the errors that can occur when uniformity is incorrectly assumed in a single cylinder model, (iii) nonsumming interactions between cells and electrodes that can dramatically increase the duration of the effective capacitative electrode artefact, and (iv) shunting inhibition and double impalements in a hippocampal CA1 pyramidal cell "cartoon" representation. These solutions should complement compartmental modelling techniques.
机译:具有体细胞的任意分支无源电缆神经元模型中瞬态的解决方案扩展到具有不均匀电参数和多个树突分流的模型。对注入电流的响应可以再次表示为无限数量的指数衰减分量,这些分量具有从递归先验方程的根获得的系统时间常数。互惠关系和全局参数依赖性与统一模型相同。无限多个“原始”电形态模型映射到给定的“核心”电渗模型上。现在可以进行本地以及全局原始参数折衷。通过生物学上相关的例子来说明解决方案:(i)两圆柱+体皮质锥体细胞模型中不均匀电参数的影响,(ii)在单圆柱模型中错误地假设均匀性时可能发生的错误,(iii)细胞和电极之间的非求和相互作用会极大地增加有效电容性电极假象的持续时间,并且(iv)海马CA1锥体细胞“卡通”表示中的分流抑制和双重损伤。这些解决方案应补充隔室建模技术。

著录项

  • 作者

    Major, G; Evans, J D;

  • 作者单位
  • 年度 1994
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  • 原文格式 PDF
  • 正文语种 en
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