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迈向心脏电生理学的预测建模。

Towards predictive modelling of the electrophysiology of the heart.

作者信息

Vigmond Edward, Vadakkumpadan Fijoy, Gurev Viatcheslav, Arevalo Hermenegild, Deo Makarand, Plank Gernot, Trayanova Natalia

机构信息

Department of Electrical and Computer Engineering, University of Calgary, Calgary, Alberta, Canada.

出版信息

Exp Physiol. 2009 May;94(5):563-77. doi: 10.1113/expphysiol.2008.044073. Epub 2009 Mar 6.

Abstract

The simulation of cardiac electrical function is an example of a successful integrative multiscale modelling approach that is directly relevant to human disease. Today we stand at the threshold of a new era, in which anatomically detailed, tomographically reconstructed models are being developed that integrate from the ion channel to the electromechanical interactions in the intact heart. Such models hold high promise for interpretation of clinical and physiological measurements, for improving the basic understanding of the mechanisms of dysfunction in disease, such as arrhythmias, myocardial ischaemia and heart failure, and for the development and performance optimization of medical devices. The goal of this article is to present an overview of current state-of-art advances towards predictive computational modelling of the heart as developed recently by the authors of this article. We first outline the methodology for constructing electrophysiological models of the heart. We then provide three examples that demonstrate the use of these models, focusing specifically on the mechanisms for arrhythmogenesis and defibrillation in the heart. These include: (1) uncovering the role of ventricular structure in defibrillation; (2) examining the contribution of Purkinje fibres to the failure of the shock; and (3) using magnetic resonance imaging reconstructed heart models to investigate the re-entrant circuits formed in the presence of an infarct scar.

摘要

心脏电功能模拟是一种成功的综合多尺度建模方法的实例,与人类疾病直接相关。如今,我们正站在一个新时代的门槛上,在这个时代,正在开发解剖学上详细的、断层扫描重建的模型,这些模型整合了从离子通道到完整心脏中的机电相互作用。此类模型在解释临床和生理测量结果、增进对疾病(如心律失常、心肌缺血和心力衰竭)功能障碍机制的基本理解以及医疗设备的开发和性能优化方面具有很大的前景。本文的目的是概述本文作者最近在心脏预测性计算建模方面的最新进展。我们首先概述构建心脏电生理模型的方法。然后,我们提供三个实例来展示这些模型的应用,特别关注心脏中致心律失常和除颤的机制。这些实例包括:(1)揭示心室结构在除颤中的作用;(2)研究浦肯野纤维对电击失败的影响;(3)使用磁共振成像重建的心脏模型来研究梗死瘢痕存在时形成的折返环路。

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