2021
DOI: 10.3390/math9111247
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Electro-Mechanical Whole-Heart Digital Twins: A Fully Coupled Multi-Physics Approach

Abstract: Mathematical models of the human heart are evolving to become a cornerstone of precision medicine and support clinical decision making by providing a powerful tool to understand the mechanisms underlying pathophysiological conditions. In this study, we present a detailed mathematical description of a fully coupled multi-scale model of the human heart, including electrophysiology, mechanics, and a closed-loop model of circulation. State-of-the-art models based on human physiology are used to describe membrane k… Show more

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Cited by 68 publications
(90 citation statements)
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References 133 publications
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“…Electrical excitation and wave propagation in the myocardium were simulated as part of our electro-mechanical simulation framework (Gerach et al, 2021 ). The electrophysiological part is based on the verified framework acCELLerate (Seemann et al, 2010 ; Niederer et al, 2011 ).…”
Section: Methodsmentioning
confidence: 99%
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“…Electrical excitation and wave propagation in the myocardium were simulated as part of our electro-mechanical simulation framework (Gerach et al, 2021 ). The electrophysiological part is based on the verified framework acCELLerate (Seemann et al, 2010 ; Niederer et al, 2011 ).…”
Section: Methodsmentioning
confidence: 99%
“…In recent years, cardiac mechanical modeling has steadily advanced in terms of complexity (Gurev et al, 2015 ; Augustin et al, 2016 ; Gerach et al, 2021 ) and physiological accuracy (Fritz et al, 2014 ; Pfaller et al, 2019 ). The present study builds on this, and presents a human electro-mechanically coupled 4-chamber whole-heart model, embedded into the torso.…”
Section: Introductionmentioning
confidence: 99%
“…The entire volume mesh consisted of 48,780 nodes and 90,801 cells. In the LV, there were two elements transmurally, which suffices to obtain correct deformation according to the convergence analysis conducted by Gerach et al [34]. We used quadratic tetrahedral elements to discretize the volume and linear triangular elements for the surfaces.…”
Section: The Geometrical Model Of the Heartmentioning
confidence: 99%
“…To calculate the external forces, we included a closed-loop circulatory model and a pericardial model. The circulatory model provides a pressure-volume relation in the four chambers and delivers the pressure values, which are acting on the endocardial surfaces [34]. The closed-loop model ensures that the total blood volume in the circulatory system is preserved over several heart beats.…”
Section: The Numerical Solvermentioning
confidence: 99%
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