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Modeling Cardiac Electrical Activity at the Cell and Tissue Levels

机译:在细胞和组织水平上模拟心脏电活动

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Significant tissue structures exist in cardiac ventricular tissue, which are of supracellular dimension. It is hypothesized that these tissue structures contribute to the discontinuous spread of electrical activation, may contribute to arrhythmogenesis, and also provide a substrate for effective cardioversion. However, the influences of these mesoscale tissue structures in intact ventricular tissue are difficult to understand solely on the basis of experimental measurement. Current measurement technology is able to record at both the macroscale tissue level and the microscale cellular or subcellular level, but to date it has not been possible to obtain large volume, direct measurements at the mesoscales. To bridge this scale gap in experimental measurements, we use tissue-specific structure and mathematical modeling. Our models, which can incorporate ion channel models at the cell level into the reaction-diffusion equations at the tissue level, have enabled us to consider key hypotheses regarding discontinuous activation.
机译:心脏心室组织中存在重要的组织结构,其具有超细胞大小。假设这些组织结构有助于电激活的不连续扩散,可能有助于心律失常,并且还为有效的心脏复律提供了基础。然而,仅基于实验测量难以理解完整的心室组织中这些中尺度组织结构的影响。当前的测量技术能够在宏观组织水平和微观尺度的细胞或亚细胞水平上进行记录,但是迄今为止,尚不可能在中尺度上获得大体积的直接测量结果。为了弥合实验测量中的规模差距,我们使用组织特定的结构和数学模型。我们的模型可以将细胞水平的离子通道模型纳入组织水平的反应扩散方程式,从而使我们能够考虑有关不连续激活的关键假设。

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