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Influence of right and left atrial tissue heterogeneity on atrial fibrillation perpetuation

机译:左右心房组织异质性对房颤持续性的影响

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We propose a biophysical modelling approach to separately investigate the impact of right and left atrial (RA/LA) electrical heterogeneity on atrial fibrillation (AF) perpetuation. The baseline AF substrate was based on a 4:1 anisotropy ratio and uniform membrane properties. AF was initiated by a ramp-pacing protocol applied in the pulmonary veins region. Once AF was observed, random patchy heterogeneities in action potential duration (shorter duration inside the patches) were introduced in the cellular model for the subsequent simulation of AF. The effect of tissue heterogeneity on AF perpetuation was quantified by the duration of AF episodes (an AF episode lasting more than 50 s was considered as sustained). For high percentages of heterogeneities, the mean AF episode duration and the number of non-terminated AF episodes were significantly higher for the RA compared to the LA. This could be indicative of a very probable involvement of the RA substrate into the persistent AF process in this model. A direct link between the spatial localization of tissue heterogeneity and AF duration was also observed.
机译:我们提出了一种生物物理建模方法来分别研究左右心房(RA / LA)电气异质性对房颤(AF)永存的影响。基线AF基材基于4:1的各向异性比和均匀的膜性能。通过在肺静脉区域应用渐进式起搏方案来启动房颤。一旦观察到AF,就将动作电位持续时间(斑块内较短的持续时间)的随机斑块异质性引入细胞模型中,用于随后的AF模拟。组织异质性对房颤永存的影响通过房颤发作的持续时间进行量化(持续时间超过50秒的房颤发作被认为是持续性的)。对于异质性百分比较高的情况,RA的平均AF发作持续时间和未终止的AF发作次数明显高于LA。这可能表明该模型中RA底物非常可能参与了持续性AF过程。还观察到组织异质性的空间定位与AF持续时间之间存在直接联系。

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