An eikonal model with re-excitability for fast simulations in cardiac electrophysiology

Fuente: arXiv
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Main Authors: Gander, Lia, Krause, Rolf, Costabal, Francisco Sahli, Pezzuto, Simone
Format: Preprint
Published: 2024
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author Gander, Lia
Krause, Rolf
Costabal, Francisco Sahli
Pezzuto, Simone
author_facet Gander, Lia
Krause, Rolf
Costabal, Francisco Sahli
Pezzuto, Simone
contents Precision cardiology based on cardiac digital twins requires accurate simulations of cardiac arrhythmias. However, detailed models, such as the monodomain model, are computationally costly and have limited applicability in practice. Thus, it desirable to have fast models that can still represent the main physiological features presented during cardiac arrhythmias. The eikonal model is an approximation of the monodomain model that is widely used to describe the arrival times of the electrical wave. However, the standard eikonal model does not generalize to the complex re-entrant dynamics that characterize the cardiac arrhythmias. In this work, we propose an eikonal model that includes the tissue re-excitability, which allows to describe re-entries. The re-excitability properties are inferred from the monodomain model. Our eikonal model also handles the tissue anisotropy and heterogeneity. We compare the eikonal model to the monodomain model in various numerical experiments in the atria and the ventricles. The eikonal model is qualitatively accurate in the simulation of re-entries and can be potentially ran in real-time, opening the door to its clinical applicability.
format Preprint
id arxiv_https___arxiv_org_abs_2410_22583
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle An eikonal model with re-excitability for fast simulations in cardiac electrophysiology
Gander, Lia
Krause, Rolf
Costabal, Francisco Sahli
Pezzuto, Simone
Computational Engineering, Finance, and Science
Numerical Analysis
Precision cardiology based on cardiac digital twins requires accurate simulations of cardiac arrhythmias. However, detailed models, such as the monodomain model, are computationally costly and have limited applicability in practice. Thus, it desirable to have fast models that can still represent the main physiological features presented during cardiac arrhythmias. The eikonal model is an approximation of the monodomain model that is widely used to describe the arrival times of the electrical wave. However, the standard eikonal model does not generalize to the complex re-entrant dynamics that characterize the cardiac arrhythmias. In this work, we propose an eikonal model that includes the tissue re-excitability, which allows to describe re-entries. The re-excitability properties are inferred from the monodomain model. Our eikonal model also handles the tissue anisotropy and heterogeneity. We compare the eikonal model to the monodomain model in various numerical experiments in the atria and the ventricles. The eikonal model is qualitatively accurate in the simulation of re-entries and can be potentially ran in real-time, opening the door to its clinical applicability.
title An eikonal model with re-excitability for fast simulations in cardiac electrophysiology
topic Computational Engineering, Finance, and Science
Numerical Analysis
url https://arxiv.org/abs/2410.22583