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Maxx Holmes

Showing results (1-10 of 10) with videos related to

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Methods (San Diego, Calif.)|March 4, 2020
Multi-scale approaches for the simulation of cardiac electrophysiology: I - Sub-cellular and stochastic calcium dynamics from cell to organMichael A Colman, Maxx Holmes, Dominic G Whittaker, et al.
Journal of Molecular and Cellular Cardiology Plus|March 30, 2026
Corrigendum to "Sex-specific human electromechanical multiscale in-silico models for virtual therapy evaluation" [J Mol Cell Cardiol Plus 13 (2025) 100479]Maxx Holmes, Zhinuo Jenny Wang, Ruben Doste, et al.
Journal of Molecular and Cellular Cardiology Plus|September 2, 2025
Sex-specific human electromechanical multiscale in-silico models for virtual therapy evaluationMaxx Holmes, Zhinuo Jenny Wang, Ruben Doste, et al.
Frontiers in Pharmacology|April 1, 2025
<i>In silico</i> predictions of drug-induced changes in human cardiac contractility align with experimental recordingsCristian Trovato, Stefano Longobardi, Elisa Passini, et al.
Frontiers in Pharmacology|November 10, 2025
Quantitative assessment of the usability of electromechanical human-based modelling and simulation to replace Langendorff isolated rabbit heart experiments in the preclinical settingMaxx Holmes, Hector Martinez-Navarro, Marcel Mohr, et al.
Medical Image Analysis|November 28, 2024
Harnessing 12-lead ECG and MRI data to personalise repolarisation profiles in cardiac digital twin models for enhanced virtual drug testingJulia Camps, Zhinuo Jenny Wang, Ruben Doste, et al.
Computer Methods and Programs in Biomedicine|February 27, 2026
An automated computational pipeline for generating large-scale cohorts of patient-specific ventricular models in electromechanical in silico trialsRuben Doste, Julia Camps, Zhinuo Jenny Wang, et al.
Circulation Research|April 7, 2026
T-World Virtual Human Cardiomyocyte. I. Development, Validation, and Cell ArrhythmogenesisJakub Tomek, Maxx Holmes, Thomas Bury, et al.
Circulation Research|April 8, 2026
T-World Virtual Human Cardiomyocyte. II. Organ-Scale Simulations and ApplicationsJakub Tomek, Maxx Holmes, Hector Martinez-Navarro, et al.
Biorxiv : the Preprint Server for Biology|April 8, 2025
T-World: A highly general computational model of a human ventricular myocyteJakub Tomek, Xin Zhou, Hector Martinez-Navarro, et al.
Pageof 1

Showing results (1-10 of 10) with videos related to

Sort By:
Pageof 1
Methods (San Diego, Calif.)|March 4, 2020
Multi-scale approaches for the simulation of cardiac electrophysiology: I - Sub-cellular and stochastic calcium dynamics from cell to organMichael A Colman, Maxx Holmes, Dominic G Whittaker, et al.
Journal of Molecular and Cellular Cardiology Plus|March 30, 2026
Corrigendum to "Sex-specific human electromechanical multiscale in-silico models for virtual therapy evaluation" [J Mol Cell Cardiol Plus 13 (2025) 100479]Maxx Holmes, Zhinuo Jenny Wang, Ruben Doste, et al.
Journal of Molecular and Cellular Cardiology Plus|September 2, 2025
Sex-specific human electromechanical multiscale in-silico models for virtual therapy evaluationMaxx Holmes, Zhinuo Jenny Wang, Ruben Doste, et al.
Frontiers in Pharmacology|April 1, 2025
<i>In silico</i> predictions of drug-induced changes in human cardiac contractility align with experimental recordingsCristian Trovato, Stefano Longobardi, Elisa Passini, et al.
Frontiers in Pharmacology|November 10, 2025
Quantitative assessment of the usability of electromechanical human-based modelling and simulation to replace Langendorff isolated rabbit heart experiments in the preclinical settingMaxx Holmes, Hector Martinez-Navarro, Marcel Mohr, et al.
Medical Image Analysis|November 28, 2024
Harnessing 12-lead ECG and MRI data to personalise repolarisation profiles in cardiac digital twin models for enhanced virtual drug testingJulia Camps, Zhinuo Jenny Wang, Ruben Doste, et al.
Computer Methods and Programs in Biomedicine|February 27, 2026
An automated computational pipeline for generating large-scale cohorts of patient-specific ventricular models in electromechanical in silico trialsRuben Doste, Julia Camps, Zhinuo Jenny Wang, et al.
Circulation Research|April 7, 2026
T-World Virtual Human Cardiomyocyte. I. Development, Validation, and Cell ArrhythmogenesisJakub Tomek, Maxx Holmes, Thomas Bury, et al.
Circulation Research|April 8, 2026
T-World Virtual Human Cardiomyocyte. II. Organ-Scale Simulations and ApplicationsJakub Tomek, Maxx Holmes, Hector Martinez-Navarro, et al.
Biorxiv : the Preprint Server for Biology|April 8, 2025
T-World: A highly general computational model of a human ventricular myocyteJakub Tomek, Xin Zhou, Hector Martinez-Navarro, et al.
Pageof 1