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Int J Numer Method Biomed Eng ; 39(2): e3666, 2023 02.
Article in English | MEDLINE | ID: mdl-36562492

ABSTRACT

Approximating the fast dynamics of depolarization waves in the human heart described by the monodomain model is numerically challenging. Splitting methods for the PDE-ODE coupling enable the computation with very fine space and time discretizations. Here, we compare different splitting approaches regarding convergence, accuracy, and efficiency. Simulations were performed for a benchmark problem with the Beeler-Reuter cell model on a truncated ellipsoid approximating the left ventricle including a localized stimulation. For this configuration, we provide a reference solution for the transmembrane potential. We found a semi-implicit approach with state variable interpolation to be the most efficient scheme. The results are transferred to a more physiological setup using a bi-ventricular domain with a complex external stimulation pattern to evaluate the accuracy of the activation time for different resolutions in space and time.


Subject(s)
Electrophysiologic Techniques, Cardiac , Models, Cardiovascular , Humans , Heart/physiology , Cardiac Electrophysiology , Heart Ventricles , Computer Simulation
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