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通过微分方程求解的大型神经元网络模型中NMDA和非NMDA受体的突触整合。

Synaptic integration of NMDA and non-NMDA receptors in large neuronal network models solved by means of differential equations.

作者信息

Bernard C, Ge Y C, Stockley E, Willis J B, Wheal H V

机构信息

Department of Physiology and Pharmacology, Southampton University, UK.

出版信息

Biol Cybern. 1994;70(3):267-73. doi: 10.1007/BF00197607.

Abstract

Alpha functions are commonly used to describe different receptor channel kinetics (non-NMDA, GABAA and GABAB). In this paper we show that they may be represented as solutions to simple ordinary differential equations. This alternative method is compared with the commonly used direct summation of the alpha function conductances in a high-level neuronal circuit model. A parametric study shows that the differential equation method greatly speeds up the previous summation method. The forward Euler method used to solve this differential equation is shown to be accurate for this type of simulation. The modelling of NMDA receptor channel kinetics is also discussed.

摘要

α函数通常用于描述不同的受体通道动力学(非NMDA、GABAA和GABAB)。在本文中,我们表明它们可以表示为简单常微分方程的解。在一个高级神经元电路模型中,将这种替代方法与常用的α函数电导直接求和方法进行了比较。参数研究表明,微分方程方法大大加快了先前的求和方法。用于求解此微分方程的前向欧拉方法对于此类模拟显示是准确的。还讨论了NMDA受体通道动力学的建模。

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