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Reentry Near the Percolation Threshold in a Heterogeneous Discrete Model for Cardiac Tissue

机译:在心脏组织的异构离散模型中接近渗滤阈值的折返。

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摘要

Arrhythmias in cardiac tissue are related to irregular electrical wave propagation in the heart. Cardiac tissue is formed by a discrete cell network, which is often heterogeneous. A localized region with a fraction of nonconducting links surrounded by homogeneous conducting tissue can become a source of reentry and ectopic beats. Extensive simulations in a discrete model of cardiac tissue show that a wave crossing a heterogeneous region of cardiac tissue can disintegrate into irregular patterns, provided the fraction of nonconducting links is close to the percolation threshold of the cell network. The dependence of the reentry probability on this fraction, the system size, and the degree of excitability can be inferred from the size distribution of nonconducting clusters near the percolation threshold.
机译:心脏组织中的心律不齐与心脏中不规则的电波传播有关。心脏组织是由离散的细胞网络形成的,该网络通常是异质的。具有被均匀导电组织包围的非导电连接的一部分的局部区域可能成为折返和异位搏动的来源。在心脏组织的离散模型中进行的广泛模拟显示,如果不导电链接的比例接近细胞网络的渗透阈值,则穿过心脏组织异质区域的波可以分解为不规则模式。可从渗流阈值附近的非导电团簇的尺寸分布推断出再入概率对该分数,系统尺寸和兴奋程度的依赖性。

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