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How computer simulations of the human heart can improve anti-arrhythmia therapy

机译:人心脏的计算机模拟如何改善抗心律失常治疗

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摘要

Over the last decade, the state-of-the-art in cardiac computational modelling has progressed rapidly. The electrophysiological function of the heart can now be simulated with a high degree of detail and accuracy, opening the doors for simulation-guided approaches to anti-arrhythmic drug development and patient-specific therapeutic interventions. In this review, we outline the basic methodology for cardiac modelling, which has been developed and validated over decades of research. In addition, we present several recent examples of how computational models of the human heart have been used to address current clinical problems in cardiac electrophysiology. We will explore the use of simulations to improve anti-arrhythmic pacing and defibrillation interventions; to predict optimal sites for clinical ablation procedures; and to aid in the understanding and selection of arrhythmia risk markers. Together, these studies illustrate how the tremendous advances in cardiac modelling are poised to revolutionize medical treatment and prevention of arrhythmia.
机译:在过去的十年中,心脏计算建模的最新技术发展迅速。现在可以高度详细和准确地模拟心脏的电生理功能,为抗心律不齐药物开发和针对患者的特定治疗干预措施的模拟指导方法打开了大门。在这篇综述中,我们概述了心脏建模的基本方法,该方法已开发和验证了数十年。此外,我们还提供了几个最近的例子,说明如何使用人类心脏的计算模型来解决心脏电生理学中的当前临床问题。我们将探索使用模拟方法改善抗心律失常起搏和除颤的干预措施;预测临床消融程序的最佳位置;并有助于了解和选择心律失常的危险指标。这些研究共同说明了心脏建模的巨大进步将如何彻底改变医学治疗和心律失常的预防方法。

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