Showing results (1-10 of 37) with videos related to
Sort By:
Pageof 4
Plos Computational Biology|August 9, 2019
Arrhythmia mechanisms and spontaneous calcium release: Bi-directional coupling between re-entrant and focal excitationMichael A ColmanScientific Reports|September 13, 2023
A simple approach for image-based modelling of the heart that enables robust simulation of highly heterogeneous electrical excitationMichael A Colman, Alan P BensonThe Journal of Physiology|May 30, 2026
Multiscale mechanistic modelling of heterogeneity in cardiac sub-cellular calcium handling accounting for variable t-system densityMichael A Colman, Yohannes Shiferaw, David ConesaFrontiers in Physiology|September 25, 2018
Description of the Human Atrial Action Potential Derived From a Single, Congruent Data Source: Novel Computational Models for Integrated Experimental-Numerical Study of Atrial Arrhythmia MechanismsMichael A Colman, Priyanka Saxena, Sarah Kettlewell, et al.Interface Focus|December 18, 2023
Patchy fibrosis promotes trigger-substrate interactions that both generate and maintain atrial fibrillationMichael A Colman, Roshan Sharma, Oleg V Aslanidi, et al.Plos Computational Biology|June 17, 2017
In silico assessment of genetic variation in KCNA5 reveals multiple mechanisms of human atrial arrhythmogenesisMichael A Colman, Haibo Ni, Bo Liang, et al.Plos Computational Biology|March 3, 2017
Novel non-invasive algorithm to identify the origins of re-entry and ectopic foci in the atria from 64-lead ECGs: A computational studyErick A Perez Alday, Michael A Colman, Philip Langley, et al.The Journal of Physiology|August 4, 2026
Sedentary ageing remodels the structure-function relationships that underlie calcium signalling at super-resolution scales in the heartMiriam E Hurley, David Conesa, Alan P Benson, et al.Plos Computational Biology|December 17, 2016
Atrial Heterogeneity Generates Re-entrant Substrate during Atrial Fibrillation and Anti-arrhythmic Drug Action: Mechanistic Insights from Canine Atrial ModelsMarta Varela, Michael A Colman, Jules C Hancox, et al.Frontiers in Physiology|November 10, 2016
Slow Conduction in the Border Zones of Patchy Fibrosis Stabilizes the Drivers for Atrial Fibrillation: Insights from Multi-Scale Human Atrial ModelingRoss Morgan, Michael A Colman, Henry Chubb, et al.Pageof 4