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Theoretical Models and Computational Analysis of Action Potential Dispersion for Cardiac Arrhythmia Risk Stratification

机译:心律失常风险分层动作潜力分散的理论模型及计算分析

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Reentrant cardiac arrhythmias such as atrial fibrillation (AF) and ventricular fibrillation (VF) are common cardiac arrhythmias that account for substantial morbidity and mortality throughout the world. However, the mechanisms and optimal ablation treatment strategies for such arrhythmias are still unclear. Using 2D optical mapping of a mouse model with AF and VF, we have identified regional heterogeneity of the action potential duration (APD) in the atria and ventricles of the heart as key drivers for the initiation and persistence of reentry. The purpose of this paper is to discuss theoretical patterns of dispersion, demonstrate patterns of dispersion seen in our mouse model and discuss the computational analysis of APD dispersion patterns. These analyses and discussions may lead to better understanding of dispersion patterns in patients with these arrhythmias, as well as help comprehend whether and how reducing dispersion can lead to arrhythmia risk stratification and treatment strategies for arrhythmias.
机译:克雷特心脏心律失常如心房颤动(AF)和心室颤动(VF)是常见的心律失常,其占全世界的大量发病和死亡率。然而,这种心律失常的机制和最佳消融治疗策略尚不清楚。使用与AF和VF的鼠标模型的2D光学映射,我们已经确定了Atria和心室内的动作潜在持续时间(APD)的区域异质性,因为重新入门的启动和持续存在的关键驱动因素。本文的目的是讨论色散的理论模式,展示在小鼠模型中看到的分散模式,并讨论了APD分散模式的计算分析。这些分析和讨论可能导致这些心律失常患者的分散模式,以及帮助理解过度的分散可以导致心律失常的心律失常,治疗策略。

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