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Activity level of an atrial ectopic focus observed through the atrial vectorcardiogram: A biophysical model

机译:通过心房心电图观察到的房外异位灶的活动水平:一种生物物理模型

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This study aims at assessing the relation between the activity level of an ectopic focus and the complexity of the resulting atrial fibrillation (AF) dynamics. Eight different episodes of focal AF were simulated in a 3D model of human atria. To create various AF dynamics, the episodes differed by the location of their focal source. The activity level of a source was quantified by the number of propagating focal fronts originating from that source. The dynamic complexity was quantified through the time course of the atrial vectorcardiogram (VCG) orientation. The eigenvalues of the second-order raw moment matrix of the normalized atrial VCG were used to characterize the spread of spatial distribution of the atrial VCG. A strong correlation was found between the 3rd eigenvalues and the number of focal fronts. Analyzing the spatial distribution of the atrial VCG could provide information about the activity level of atrial ectopic foci and the complexity of AF dynamics.
机译:这项研究旨在评估异位焦点的活动水平与心房纤颤(AF)动态复杂性之间的关系。在人心房的3D模型中模拟了8种不同的局灶性房颤发作。为了创建各种自动对焦动态,这些情节因其焦点源的位置而异。一个源的活动水平通过源于该源的传播焦点的数量来量化。动态复杂度通过心房矢量心电图(VCG)方向的时间过程进行量化。归一化的心房VCG的二阶原始矩矩阵的特征值用于表征心房VCG的空间分布的扩展。在3 rd 特征值和焦点前沿数量之间发现了很强的相关性。分析心房VCG的空间分布可以提供有关心房异位灶活动水平和房颤动力学复杂性的信息。

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