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The Virtual Ventricular Wall: A Tool for Exploring Cardiac Propagation and Arrhythmogenesis

机译:虚拟心室壁:探索心脏传播和心律失常的工具

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摘要

Methods for the experimental and clinical investigation of cardiac arrhythmias are limited to inferring propagation within the myocardium, from surface measurements, or from electrodes at a few sites within the cardiac wall. Biophysically and anatomically detailed computational models of cardiac tissues offer a powerful way for studying the electrical propagation processes and arrhythmias within the virtual heart. We use virtual tissues to study and visualise the effects of patho- and physiological conditions, and pharmacological interventions on transmural propagation in the virtual ventricular walls. Class III drug actions are quantitatively explained by changes induced in the transmural dispersion of action potential duration. We illustrate the automated construction of a virtual anisotropic ventricle from Diffusion Tensor MRI for individual hearts, and use it to explore mechanisms leading to ventricular fibrillation. The virtual ventricular wall provides an effective tool for exploring, evaluating and visualising processes during the initiation and maintenance of ventricular arrhythmias.
机译:用于心律不齐的实验和临床研究的方法仅限于根据表面测量或心脏壁内少数部位的电极推断心肌内的传播。心脏组织的生物学和解剖学详细计算模型为研究虚拟心脏内的电传播过程和心律不齐提供了一种有力的方法。我们使用虚拟组织来研究和可视化病理和生理条件的影响,以及在虚拟心室壁中透壁传播的药理干预。通过动作电位持续时间的透壁分散所引起的变化来定量解释III类药物的作用。我们举例说明了从扩散张量MRI对单个心脏的虚拟各向异性心室的自动构建,并使用它来探索导致心室纤颤的机制。虚拟心室壁为心律失常的发作和维持过程中的探索,评估和可视化过程提供了有效的工具。

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