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[豚鼠左心室透壁各层心肌细胞的机电耦合]

[Electromechanical coupling in cardiomyocytes from transmural layers of guinea pig left ventricle].

作者信息

Vasil'eva A D, Solov'eva O É

出版信息

Biofizika. 2012 Sep-Oct;57(5):852-9.

Abstract

The electrical and mechanical activity of heart ventricle cardiomyocytes is known to vary depending on the spatial location of cells in the wall, in particular, transmurally from the sub-endocardial layer to the sub-epicardial one. To investigate intracellular mechanisms of the functional heterogeneity of cardiomyocytes we developed mathematical models of the electromechanical coupling in cardiomyocytes from different transmural layers across the left ventricle (LV) wall of guinea pig. It is shown that the mechanisms of both direct linkages and feedback in the electromechanical coupling contribute to differences in both the shape and duration of action potential, and speed characteristics of contraction between isolated cardiac myocytes from the sub-endocardial and sub-epicardial layers.

摘要

已知心室心肌细胞的电活动和机械活动会因心肌壁中细胞的空间位置而有所不同,尤其是从心内膜下层到心外膜下层的跨壁方向。为了研究心肌细胞功能异质性的细胞内机制,我们建立了豚鼠左心室壁不同跨壁层心肌细胞机电耦合的数学模型。结果表明,机电耦合中的直接联系和反馈机制都导致了心内膜下层和心外膜下层分离心肌细胞之间动作电位的形状和持续时间以及收缩速度特性的差异。

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