Computational models of cardiac electrophysiology provided insights into arrhythmogenesis and paved the way toward tailored therapies in the last years. To fully leverage in silico models in future research, these models need to be adapted to reflect pathologies, genetic alterations, or pharmacological effects, however. A common approach is to leave the structure of established models unaltered and estimate the values of a set of parameters. Today’s high-throughput patch clamp data acquisition methods require robust, unsupervised algorithms that estimate parameters both accurately and reliably. In this work, two classes of optimization approaches are evaluated: gradient-based trust-region-reflective and derivative-free particle swarm algori...
Background and Objective: Models of the cardiomyocyte action potential have contributed immensely to...
Background and Objective: Models of the cardiomyocyte action potential have contributed immensely to...
Fitting parameter sets of non-linear equations in cardiac single cell ionic models to reproduce expe...
© 2019 Biophysical Society Mathematical models of ionic currents are used to study the electrophysio...
Cardiac electrophysiological computational models are often developed from previously published mode...
Cardiac electrophysiological computational models are often developed from previously published mode...
Cardiac electrophysiological computational models are often developed from previously published mode...
Cardiac electrophysiological computational models are often developed from previously published mode...
Cardiac electrophysiological computational models are often developed from previously published mode...
Cardiac electrophysiological computational models are often developed from previously published mode...
Cardiac electrophysiological computational models are often developed from previously published mode...
The action potential of a cardiac cell is made up of a complex balance of ionic currents which flow ...
The action potential of a cardiac cell is made up of a complex balance of ionic currents which flow ...
The action potential of a cardiac cell is made up of a complex balance of ionic currents which flow ...
Background and Objective: Models of the cardiomyocyte action potential have contributed immensely to...
Background and Objective: Models of the cardiomyocyte action potential have contributed immensely to...
Background and Objective: Models of the cardiomyocyte action potential have contributed immensely to...
Fitting parameter sets of non-linear equations in cardiac single cell ionic models to reproduce expe...
© 2019 Biophysical Society Mathematical models of ionic currents are used to study the electrophysio...
Cardiac electrophysiological computational models are often developed from previously published mode...
Cardiac electrophysiological computational models are often developed from previously published mode...
Cardiac electrophysiological computational models are often developed from previously published mode...
Cardiac electrophysiological computational models are often developed from previously published mode...
Cardiac electrophysiological computational models are often developed from previously published mode...
Cardiac electrophysiological computational models are often developed from previously published mode...
Cardiac electrophysiological computational models are often developed from previously published mode...
The action potential of a cardiac cell is made up of a complex balance of ionic currents which flow ...
The action potential of a cardiac cell is made up of a complex balance of ionic currents which flow ...
The action potential of a cardiac cell is made up of a complex balance of ionic currents which flow ...
Background and Objective: Models of the cardiomyocyte action potential have contributed immensely to...
Background and Objective: Models of the cardiomyocyte action potential have contributed immensely to...
Background and Objective: Models of the cardiomyocyte action potential have contributed immensely to...
Fitting parameter sets of non-linear equations in cardiac single cell ionic models to reproduce expe...