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Verification of cardiac tissue electrophysiology simulators using an N-version benchmark
Authors:Niederer Steven A  Kerfoot Eric  Benson Alan P  Bernabeu Miguel O  Bernus Olivier  Bradley Chris  Cherry Elizabeth M  Clayton Richard  Fenton Flavio H  Garny Alan  Heidenreich Elvio  Land Sander  Maleckar Mary  Pathmanathan Pras  Plank Gernot  Rodríguez José F  Roy Ishani  Sachse Frank B  Seemann Gunnar  Skavhaug Ola  Smith Nic P
Affiliation:Department of Biomedical Engineering, Division of Imaging Sciences and Biomedical Engineering, King's College London, UK. steven.niederer@kcl.ac.uk
Abstract:Ongoing developments in cardiac modelling have resulted, in particular, in the development of advanced and increasingly complex computational frameworks for simulating cardiac tissue electrophysiology. The goal of these simulations is often to represent the detailed physiology and pathologies of the heart using codes that exploit the computational potential of high-performance computing architectures. These developments have rapidly progressed the simulation capacity of cardiac virtual physiological human style models; however, they have also made it increasingly challenging to verify that a given code provides a faithful representation of the purported governing equations and corresponding solution techniques. This study provides the first cardiac tissue electrophysiology simulation benchmark to allow these codes to be verified. The benchmark was successfully evaluated on 11 simulation platforms to generate a consensus gold-standard converged solution. The benchmark definition in combination with the gold-standard solution can now be used to verify new simulation codes and numerical methods in the future.
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