2023
DOI: 10.1371/journal.pone.0286577
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A smoothed boundary bidomain model for cardiac simulations in anatomically detailed geometries

Abstract: This manuscript presents a novel finite difference method to solve cardiac bidomain equations in anatomical models of the heart. The proposed method employs a smoothed boundary approach that represents the boundaries between the heart and the surrounding medium as a spatially diffuse interface of finite thickness. The bidomain boundary conditions are implicitly implemented in the smoothed boundary bidomain equations presented in the manuscript without the need of a structured mesh that explicitly tracks the he… Show more

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