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Scientific Reports|November 15, 2019
Standardised Framework for Quantitative Analysis of Fibrillation DynamicsXinyang Li, Caroline H Roney, Balvinder S Handa, et al.
Frontiers in Physiology|September 16, 2024
In silico and in vitro models reveal the molecular mechanisms of hypocontractility caused by <i>TPM1</i> M8RJenette G Creso, Ilhan Gokhan, Michael J Rynkiewicz, et al.
Biophysical Journal|March 27, 2013
Beta-adrenergic stimulation maintains cardiac function in Serca2 knockout miceSander Land, William E Louch, Steven A Niederer, et al.
Progress in Biomedical Engineering (Bristol, England)|June 26, 2023
A systematic review of cardiac <i>in-silico</i> clinical trialsCristobal Rodero, Tiffany M G Baptiste, Rosie K Barrows, et al.
Wires Mechanisms of Disease|October 7, 2020
Using cardiac ionic cell models to interpret clinical dataCesare Corrado, Adelisa Avezzù, Angela W C Lee, et al.
Arxiv|February 13, 2023
Fiber Organization has Little Effect on Electrical Activation Patterns during Focal Arrhythmias in the Left AtriumJiyue He, Arkady M Pertsov, Elizabeth M Cherry, et al.
IEEE Transactions on Bio-Medical Engineering|November 18, 2022
Fiber Organization Has Little Effect on Electrical Activation Patterns During Focal Arrhythmias in the Left AtriumJiyue He, Arkady M Pertsov, Elizabeth M Cherry, et al.
Journal of Pharmacological and Toxicological Methods|May 15, 2025
Computational modelling for improved translation of cardiac inotropic and lusitropic drug effects from rats to humansAlexander Jung, Christoph M Augustin, Julia Voglhuber-Höller, et al.
Archives of Biochemistry and Biophysics|December 3, 2020
Fast-relaxing cardiomyocytes exert a dominant role in the relaxation behavior of heterogeneous myocardiumJ Alexander Clark, Lorenzo R Sewanan, Jonas Schwan, et al.
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