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动作电位持续时间的跨壁电生理异质性增加了易损性上限。

Transmural electrophysiological heterogeneities in action potential duration increase the upper limit of vulnerability.

作者信息

Maharaj T, Rodriguez B, Blake R, Trayanova N A, Gavaghan D J

机构信息

Computing Laboratory, Oxford, UK.

出版信息

Conf Proc IEEE Eng Med Biol Soc. 2006;2006:4043-6. doi: 10.1109/IEMBS.2006.259345.

Abstract

Transmural dispersion in action potential duration (APD) has been shown to contribute to arrhythmia induction in the heart. However, its role in termination of lethal arrhythmias by defibrillation shocks has never been examined. The goal of this study is to investigate how transmural dispersion in APD affects cardiac vulnerability to electric shocks, in an attempt to better understand the mechanisms behind defibrillation failure. This study used a three- dimensional, geometrically accurate finite element bidomain rabbit ventricular model. Transmural heterogeneities in ionic currents were incorporated based on experimental data to generate the transmural APD profile recorded in adult rabbits during pacing. Results show that the incorporation of transmural APD heterogeneities in the model causes an increase in the upper limit of vulnerability from 26.7 V/cm in the homogeneous APD ventricles to 30.5 V/cm in the ventricles with heterogeneous transmural APD profile. Examination of shock-end virtual electrode polarisation and postshock electrical activity reveals that the higher ULV in the heterogeneous model is caused by increased dispersion in postshock repolarisation within the LV wall, which increases the likelihood of the establishment of intramural re-entrant circuits.

摘要

动作电位持续时间(APD)的跨壁离散已被证明会导致心脏心律失常的诱发。然而,其在除颤电击终止致死性心律失常中的作用从未被研究过。本研究的目的是探讨APD的跨壁离散如何影响心脏对电击的易损性,以便更好地理解除颤失败背后的机制。本研究使用了一个三维、几何精确的有限元双域兔心室模型。基于实验数据纳入离子电流的跨壁异质性,以生成成年兔起搏期间记录的跨壁APD曲线。结果表明,在模型中纳入跨壁APD异质性会使易损性上限从均匀APD心室中的26.7 V/cm增加到跨壁APD曲线不均匀的心室中的30.5 V/cm。对电击结束时虚拟电极极化和电击后电活动的检查表明,异质性模型中较高的ULV是由左心室壁内电击后复极离散增加引起的,这增加了壁内折返电路形成的可能性。

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