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Shock-Induced Arrhythmogenesis in the Human Heart: a Computational Modelling Study

机译:人类心灵中的冲击诱导的心律发生:计算建模研究

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Electrical defibrillation by application of a strong shock to the heart is the only effective treatment against lethal cardiac arrhythmias such as ventricular fibrillation. A large body of experimental and computational research has been devoted to understanding shock-induced effects on the heart in an attempt to improve defibrillation efficacy. However, most of the research has been performed in small animal hearts, and in particular rabbits. The difference in size between rabbits and humans might limit the extrapolation of the results to the clinical setting. In this paper, we present, for the first time, computer simulations of shock-induced effects on a human ventricular model with realistic ion channel dynamics and fibre architecture. Bidomain simulations using the human ventricular model were performed using the Chaste open source simulation package. The parallel performance of the software package was highly improved in order to meet the computational requirements of these kind of studies.
机译:通过施加强烈休克对心脏的电气除颤是针对致命心律失常的唯一有效治疗,例如心室颤动。一大堆实验和计算研究已经致力于了解对心脏的冲击诱导的影响,以提高除颤效果。然而,大多数研究已经在小动物心中进行,特别是兔子。兔子和人类之间的大小的差异可能将结果的外推到临床环境中。在本文中,我们首次出示了对具有现实离子通道动力学和纤维架构的人心室模型对触发效果的计算机模拟。使用贞洁的开源仿真包进行使用人体室模型的双胞瘤模拟。为了满足这些研究的计算要求,软件包的并行性能得到了高度改善。

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