首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Effect of cardiac tissue anisotropy on three-dimensional electrical action potential propagation
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Effect of cardiac tissue anisotropy on three-dimensional electrical action potential propagation

机译:心脏组织各向异性对三维电动作势传播的影响

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摘要

A three-dimensional (3D) electrical action potential propagation model is developed to characterize the integrated effect of cardiac tissue structure using a homogenous function with a spatial inhomogeneity. This method may be more effective for bridging the gap between computational models and experimental data for cardiac tissue anisotropy. A generalized 3D eikonal relation considering anisotropy and a self-similar evolution solution of such a relation are derived to identify the effect of anisotropy and predict the anisotropy-induced electrical wave propagation instabilities. Furthermore, the phase field equation is introduced to obtain the complex three-dimensional numerical solution of the new correlation. The present results are expected to be valuable for better understanding the physiological behavior of cardiac tissues.
机译:开发了三维(3D)电动作电位传播模型,以使用具有空间不均匀性的同质函数来表征心脏组织结构的综合效应。这种方法对于弥合心脏组织各向异性的计算模型和实验数据之间的差距可能更为有效。推导了考虑各向异性的广义3D线性关系和这种关系的自相似演化解,以识别各向异性的影响并预测各向异性引起的电波传播不稳定性。此外,引入相场方程来获得新的相关性的复杂的三维数值解。预期目前的结果对于更好地了解心脏组织的生理行为是有价值的。

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