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首页> 外文期刊>Mathematical Biosciences: An International Journal >Analytical solution of the cable equation with synaptic reversal potentials for passive neurons with tip-to-tip dendrodendritic coupling
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Analytical solution of the cable equation with synaptic reversal potentials for passive neurons with tip-to-tip dendrodendritic coupling

机译:具有树突到树突耦合的被动神经元的具有突触反转电位的电缆方程的解析解

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摘要

A passive cable model is presented for a pair of electrotonically coupled neurons in order to investigate the effects of tip-to-tip dendrodendritic gap junctions on the interaction between excitation and either pre or postsynaptic inhibition. The model represents each dendritic tree by a tapered equivalent cylinder attached to an isopotential soma. Analytical solution of the cable equation with synaptic reversal potentials is considered for each neuron to yield a system of Volterra integral equations for the voltage. The solution to the system of linear integral equations (expressed as a Neumann series.) is used to determine the current spread within the two coupled neurons, and to re-examine the sensitivity of the soma potentials (in particular) to the coupling resistance for various loci of synaptic inputs. The model is actually posed generally, so that active as well as passive properties could be considered. In the active case, a system of non-linear integral equations is derived for the voltage. (c) 2005 Elsevier Inc. All rights reserved.
机译:提出了用于一对电耦合神经元的无源电缆模型,以研究尖端到尖端的树突状间隙连接对激发与突触前或突触后抑制之间相互作用的影响。该模型通过连接到等势体的锥形等效圆柱体表示每个树状树。对于每个神经元,考虑具有突触反转电位的电缆方程的解析解,以产生电压的Volterra积分方程组。线性积分方程组(以诺伊曼级数表示)的解用于确定两个耦合神经元内的电流分布,并重新检查体电势(特别是)对耦合电阻的敏感性。各种突触输入基因座。该模型实际上是一般构成的,因此可以考虑主动和被动特性。在活动情况下,为电压导出非线性积分方程组。 (c)2005 Elsevier Inc.保留所有权利。

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