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Understanding AF Mechanisms Through Computational Modelling and Simulations

机译:通过计算建模和仿真了解AF机制

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摘要

AF is a progressive disease of the atria, involving complex mechanisms related to its initiation, maintenance and progression. Computational modelling provides a framework for integration of experimental and clinical findings, and has emerged as an essential part of mechanistic research in AF. The authors summarise recent advancements in development of multi-scale AF models and focus on the mechanistic links between alternations in atrial structure and electrophysiology with AF. Key AF mechanisms that have been explored using atrial modelling are pulmonary vein ectopy; atrial fibrosis and fibrosis distribution; atrial wall thickness heterogeneity; atrial adipose tissue infiltration; development of repolarisation alternans; cardiac ion channel mutations; and atrial stretch with mechano-electrical feedback. They review modelling approaches that capture variability at the cohort level and provide cohort-specific mechanistic insights. The authors conclude with a summary of future perspectives, as envisioned for the contributions of atrial modelling in the mechanistic understanding of AF.
机译:AF是心房的一种进行性疾病,涉及与其引发,维持和进展有关的复杂机制。计算建模为实验和临床发现的整合提供了框架,并且已经成为AF机制研究的重要组成部分。作者总结了多尺度AF模型开发的最新进展,并重点研究了房颤结构与AF的电生理之间的机械联系。使用心房模型探索的关键性房颤机制是肺静脉异位。心房纤维化及纤维化分布;心房壁厚异质性心房脂肪组织浸润;复极化交替的发展;心脏离子通道突变;以及具有机械电反馈的心房舒展。他们回顾了建模方法,这些方法捕获了同类队列中的变异性并提供了特定于队列的机制的见解。作者总结了未来的观点,如心房模型对房颤的机械理解的贡献。

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