Showing results (1-10 of 12) with videos related to
Sort By:
Pageof 2
Circulation|April 23, 2003
Imaging electrocardiographic dispersion of depolarization and repolarization during ischemia: simultaneous body surface and epicardial mappingMartyn P Nash, Chris P Bradley, David J PatersonPhilosophical Transactions. Series A, Mathematical, Physical, and Engineering Sciences|April 22, 2009
FieldML: concepts and implementationG Richard Christie, Poul M F Nielsen, Shane A Blackett, et al.Iscience|July 8, 2022
A method for investigating spatiotemporal growth patterns at cell and tissue levels during C-looping in the embryonic chick heartNazanin Ebrahimi, Mahyar Osanlouy, Chris P Bradley, et al.Journal of Cardiovascular Translational Research|July 13, 2018
Left Ventricular Diastolic Myocardial Stiffness and End-Diastolic Myofibre Stress in Human Heart Failure Using Personalised Biomechanical AnalysisZhinuo J Wang, Vicky Y Wang, Chris P Bradley, et al.Circulation. Arrhythmia and Electrophysiology|August 16, 2011
Human ventricular fibrillation during global ischemia and reperfusion: paradoxical changes in activation rate and wavefront complexityChris P Bradley, Richard H Clayton, Martyn P Nash, et al.Circulation|August 2, 2006
Evidence for multiple mechanisms in human ventricular fibrillationMartyn P Nash, Ayman Mourad, Richard H Clayton, et al.Experimental Physiology|February 3, 2006
Whole heart action potential duration restitution properties in cardiac patients: a combined clinical and modelling studyMartyn P Nash, Chris P Bradley, Peter M Sutton, et al.Annals of Biomedical Engineering|March 17, 2018
Spatio-temporal Organization During Ventricular Fibrillation in the Human HeartJinny Robson, Parham Aram, Martyn P Nash, et al.Plos Computational Biology|November 7, 2014
Effect of global cardiac ischemia on human ventricular fibrillation: insights from a multi-scale mechanistic model of the human heartIvan V Kazbanov, Richard H Clayton, Martyn P Nash, et al.Frontiers in Physiology|July 28, 2018
Enabling Detailed, Biophysics-Based Skeletal Muscle Models on HPC SystemsChris P Bradley, Nehzat Emamy, Thomas Ertl, et al.Pageof 2