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Efficient computation of electrograms and ECGs in human whole heart simulations using a reaction-eikonal model

机译:使用反应 - 欧妮斯模型有效地计算人体全心脏模拟中的电视图和心电图

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Anatomically accurate and biophysically detailed bidomain models of the human heart have proven a powerful tool for gaining quantitative insight into the links between electrical sources in the myocardium and the concomitant current flow in the surrounding medium as they represent their relationship mechanistically based on first principles. Such models are increasingly considered as a clinical research tool with the perspective of being used, ultimately, as a complementary diagnostic modality. An important prerequisite in many clinical modeling applications is the ability of models to faithfully replicate potential maps and electrograms recorded from a given patient. However, while the personalization of electrophysiology models based on the gold standard bidomain formulation is in principle feasible, the associated computational expenses are significant, rendering their use incompatible with clinical time frames.
机译:人类心灵的解剖学准确和生物物质详细的双胞瘤模型已经证明了一种强大的工具,可以获得对心肌源的电源与周围介质中的伴随电流流动的数量洞察的能力洞察,因为它们基于第一原理代表他们的关系。 这种模型越来越多地被视为临床研究工具,最终是作为互补诊断方式使用的视角。 许多临床建模应用中的一个重要先决条件是模型忠实地复制从给定患者记录的潜在地图和电视图的能力。 然而,虽然基于黄金标准双粒制定的电生理模型的个性化原则上是可行的,但相关的计算费用是显着的,虽然相关的计算费用是显着的,但呈现与临床时间框架不相容的使用。

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