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Effects of Heterogeneous Diffuse Fibrosis on Arrhythmia Dynamics and Mechanism

机译:非均质弥漫性纤维化对心律失常动力学及其机制的影响

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摘要

Myocardial fibrosis is an important risk factor for cardiac arrhythmias. Previous experimental and numerical studies have shown that the texture and spatial distribution of fibrosis may play an important role in arrhythmia onset. Here, we investigate how spatial heterogeneity of fibrosis affects arrhythmia onset using numerical methods. We generate various tissue textures that differ by the mean amount of fibrosis, the degree of heterogeneity and the characteristic size of heterogeneity. We study the onset of arrhythmias using a burst pacing protocol. We confirm that spatial heterogeneity of fibrosis increases the probability of arrhythmia induction. This effect is more pronounced with the increase of both the spatial size and the degree of heterogeneity. The induced arrhythmias have a regular structure with the period being mostly determined by the maximal local fibrosis level. We perform ablations of the induced fibrillatory patterns to classify their type. We show that in fibrotic tissue fibrillation is usually of the mother rotor type but becomes of the multiple wavelet type with increase in tissue size. Overall, we conclude that the most important factor determining the formation and dynamics of arrhythmia in heterogeneous fibrotic tissue is the value of maximal local fibrosis.
机译:心肌纤维化是心律不齐的重要危险因素。先前的实验和数值研究表明,纤维化的质地和空间分布可能在心律失常发作中起重要作用。在这里,我们使用数值方法研究纤维化的空间异质性如何影响心律失常的发作。我们生成的各种组织质地因平均纤维化程度,异质性程度和特征性异质性大小而异。我们使用起搏起搏协议研究心律不齐的发作。我们确认纤维化的空间异质性增加了心律不齐诱导的可能性。随着空间大小和异质性程度的增加,这种影响更加明显。诱发的心律不齐具有规则的结构,其周期主要由最大的局部纤维化水平决定。我们对诱发的纤颤模式进行消融以对其类型进行分类。我们显示在纤维化组织中,原纤维化通常是转子型,但随着组织大小的增加而变成多小波型。总的来说,我们得出结论,决定异质性纤维化组织中心律失常的形成和动态的最重要因素是最大局部纤维化的价值。

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