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A Simplified 2D Heart Model of the Wolff-Parkinson-White Syndrome

机译:Wolff-Parkinson-White综合征的简化2D心脏模型

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The enormous progress made in computational cardiac electrophysiology during the past decades has resulted in a diverse range of models and numerical methods. In general, researchers have elaborated highly complex and detailed simulators on the cell and tissue level. In contrast, there has been a lack of simplified whole-heart models that study specific heart arrhythmias. In this study, we approximate the electrophysiology of Wolff-Parkinson-White Syndrome with such a model. In order to reproduce the cardiac anomaly, we apply the so-called bidomain approach involving partial differential equations. Results show that the simulations are realistic, both in ECG generation and electric activation sequence. Our assessment of the model implementation takes into account parameter and geometry variation, which supports a realistic view of medical aspects. Our in silico analysis thus helps provide clear insights into the mechanisms of arrhythmias and associated ECG changes.
机译:在过去几十年中计算心电神经学中的巨大进展导致了各种模型和数值方法。通常,研究人员在细胞和组织水平上阐述了高度复杂和详细的模拟器。相比之下,缺乏研究特异性心律失常的简化全心模型。在这项研究中,我们将Wolff-Parkinson-White综合征与这种模型的电生理学估计。为了再现心脏异常,我们应用涉及局部微分方程的所谓的双胞瘤方法。结果表明,模拟在ECG生成和电激活序列中是现实的。我们对模型实施的评估考虑了参数和几何变异,支持了理解的医疗方面的视图。因此,我们的硅分析有助于提供对心律失常的机制和相关的心电图变化的清晰见解。

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