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心肌中的三维冲动传播:组织水平的致心律失常机制。

Three-dimensional impulse propagation in myocardium: arrhythmogenic mechanisms at the tissue level.

机构信息

Auckland Bioengineering Institute, University of Auckland, Auckland Mail Centre, Auckland 1142, New Zealand.

出版信息

Circ Res. 2013 Mar 1;112(5):834-48. doi: 10.1161/CIRCRESAHA.111.300157.

Abstract

Impulse propagation in the heart depends on the excitability of individual cardiomyocytes, impulse transmission between adjacent myocytes, and the 3-dimensional arrangement of those cells. Here, we review the role of each of these factors in normal and aberrant cardiac electric activation, with particular emphasis on the effects of 3-dimensional myocyte architecture at the tissue scale. The analysis draws on findings from in vivo and in vitro experiments, as well as biophysically based computer models that have been used to integrate and interpret these experimental data. It indicates that discontinuous arrangement of myocytes and extracellular connective tissue at the tissue scale can give rise to current source-to-sink mismatch, spatiotemporal distribution of refractoriness, and rate-sensitive electric instability, which contribute to the initiation and maintenance of reentrant cardiac arrhythmia. This exacerbates the risk of rhythm disturbance associated with heart disease. We conclude that structure-based, multiscale computer models that incorporate accurate information about local cellular electric activity provide a powerful platform for investigating the basis of reentrant cardiac arrhythmia. However, it is important that these models capture key features of structure and related electric function at the tissue scale.

摘要

心脏中的冲动传播依赖于单个心肌细胞的兴奋性、相邻心肌细胞之间的冲动传递以及这些细胞的三维排列。在这里,我们回顾了这些因素在正常和异常心脏电激活中的作用,特别强调了组织尺度上心肌细胞结构的三维排列的影响。该分析借鉴了体内和体外实验以及基于生物物理的计算机模型的发现,这些模型已被用于整合和解释这些实验数据。它表明,在组织尺度上,心肌细胞和细胞外连接组织的不连续排列会导致电流源到汇的不匹配、不应期的时空分布以及对速率敏感的电不稳定性,从而导致折返性心律失常的发生和维持。这增加了与心脏病相关的节律紊乱的风险。我们得出的结论是,基于结构的多尺度计算机模型,结合关于局部细胞电活动的准确信息,为研究折返性心律失常的基础提供了一个强大的平台。然而,重要的是,这些模型应在组织尺度上捕获结构和相关电功能的关键特征。

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