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一种兔窦房结细胞的数学模型。

A mathematical model of a rabbit sinoatrial node cell.

作者信息

Demir S S, Clark J W, Murphey C R, Giles W R

机构信息

Department of Electrical and Computer Engineering, Rice University, Houston 77251-1892.

出版信息

Am J Physiol. 1994 Mar;266(3 Pt 1):C832-52. doi: 10.1152/ajpcell.1994.266.3.C832.

Abstract

A mathematical model for the electrophysiological responses of a rabbit sinoatrial node cell that is based on whole cell recordings from enzymatically isolated single pacemaker cells at 37 degrees C has been developed. The ion channels, Na(+)-K+ and Ca2+ pumps, and Na(+)-Ca2+ exchanger in the surface membrane (sarcolemma) are described using equations for these known currents in mammalian pacemaker cells. The extracellular environment is treated as a diffusion-limited space, and the myoplasm contains Ca(2+)-binding proteins (calmodulin and troponin). Original features of this model include 1) new equations for the hyperpolarization-activated inward current, 2) assessment of the role of the transient-type Ca2+ current during pacemaker depolarization, 3) inclusion of an Na+ current based on recent experimental data, and 4) demonstration of the possible influence of pump and exchanger currents and background currents on the pacemaker rate. This model provides acceptable fits to voltage-clamp and action potential data and can be used to seek biophysically based explanations of the electrophysiological activity in the rabbit sinoatrial node cell.

摘要

已建立了一个基于在37摄氏度下对酶分离的单个起搏细胞进行全细胞记录的兔窦房结细胞电生理反应的数学模型。利用哺乳动物起搏细胞中这些已知电流的方程来描述表面膜(肌膜)中的离子通道、钠钾泵、钙泵以及钠钙交换体。细胞外环境被视为一个扩散受限空间,肌浆中含有钙结合蛋白(钙调蛋白和肌钙蛋白)。该模型的原始特征包括:1)超极化激活内向电流的新方程;2)评估瞬态型钙电流在起搏去极化过程中的作用;3)基于最近的实验数据纳入钠电流;4)证明泵电流、交换体电流和背景电流对起搏频率的可能影响。该模型对电压钳和动作电位数据提供了可接受的拟合,可用于寻求基于生物物理学的兔窦房结细胞电生理活动解释。

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