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电耦合离散模式对通过电连接组织传播的影响。

Effects of the discrete pattern of electrical coupling on propagation through an electrical syncytium.

作者信息

Joyner R W

出版信息

Circ Res. 1982 Feb;50(2):192-200. doi: 10.1161/01.res.50.2.192.

Abstract

We used numerical integration techniques to simulate action potential propagation along one-dimensional strands of cells coupled with electrical junctions. We considered the standard case to be a series of cardiac cells (20 micrometer in diameter, 50 micrometers long) with intercellular coupling such that the effective longitudinal resistance was 200 omega cm. The membrane properties were represented by the model of Beeler and Reuter (1977) (Sharp and Joyner, 1980). By increasing Ri (and thus decreasing the space constant, L), we showed that effects due to the discrete cell length, delta X, became apparent when delta X/L was greater than about 0.2, producing an increased maximal dV/dt but a decrease in peak inward current. We also simulated the effects of a periodic spatial variation in Ri, representing a structure with groups of well-coupled cells but with minimal coupling between the groups. Even with a constant membrane model and cell size, variations in the spatial pattern of interconnection produced significant changes in action potential shape and velocity, with some patterns producing decremental conduction or propagation failure.

摘要

我们使用数值积分技术来模拟动作电位沿着与电连接耦合的一维细胞链的传播。我们将标准情况视为一系列心肌细胞(直径20微米,长50微米),细胞间存在耦合,使得有效纵向电阻为200欧姆厘米。膜特性由Beeler和Reuter(1977年)(Sharp和Joyner,1980年)的模型表示。通过增加Ri(从而减小空间常数L),我们表明,当ΔX/L大于约0.2时,由于离散细胞长度ΔX引起的效应变得明显,导致最大dV/dt增加,但内向峰值电流减小。我们还模拟了Ri的周期性空间变化的影响,这代表了一种结构,其中存在耦合良好的细胞群,但群间耦合最小。即使膜模型和细胞大小不变,互连空间模式的变化也会导致动作电位形状和速度发生显著变化,有些模式会导致递减传导或传播失败。

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