T Alexander Quinn
T Alexander Quinn
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Systems biology: an approach
P Kohl, EJ Crampin, TA Quinn, D Noble
Clinical Pharmacology & Therapeutics 88 (1), 25-33, 2010
Physiological implications of myocardial scar structure
WJ Richardson, SA Clarke, TA Quinn, JW Holmes
Comprehensive Physiology 5 (4), 1877, 2015
Electrotonic coupling of excitable and nonexcitable cells in the heart revealed by optogenetics
TA Quinn, P Camelliti, EA Rog-Zielinska, U Siedlecka, T Poggioli, ...
Proceedings of the National Academy of Sciences 113 (51), 14852-14857, 2016
Variability in cardiac electrophysiology: using experimentally-calibrated populations of models to move beyond the single virtual physiological human paradigm
A Muszkiewicz, OJ Britton, P Gemmell, E Passini, C Sánchez, X Zhou, ...
Progress in biophysics and molecular biology 120 (1-3), 115-127, 2016
Cardiac mechano-electric coupling: acute effects of mechanical stimulation on heart rate and rhythm
TA Quinn, P Kohl
Physiological reviews 101 (1), 37-92, 2021
Neurohumoral control of sinoatrial node activity and heart rate: insight from experimental models and findings from humans
EA MacDonald, RA Rose, TA Quinn
Frontiers in physiology 11, 476266, 2020
Single-sensor system for spatially resolved, continuous, and multiparametric optical mapping of cardiac tissue
P Lee, C Bollensdorff, TA Quinn, JP Wuskell, LM Loew, P Kohl
Heart Rhythm 8 (9), 1482-1491, 2011
Early afterdepolarizations promote transmural reentry in ischemic human ventricles with reduced repolarization reserve
S Dutta, A Mincholé, E Zacur, TA Quinn, P Taggart, B Rodriguez
Progress in biophysics and molecular biology 120 (1-3), 236-248, 2016
Electrophysiological properties of computational human ventricular cell action potential models under acute ischemic conditions
S Dutta, A Mincholé, TA Quinn, B Rodriguez
Progress in biophysics and molecular biology 129, 40-52, 2017
Combining wet and dry research: experience with model development for cardiac mechano-electric structure-function studies
TA Quinn, P Kohl
Cardiovascular research 97 (4), 601-611, 2013
Cardiac mechano-electric coupling research: fifty years of progress and scientific innovation
TA Quinn, P Kohl, U Ravens
Progress in biophysics and molecular biology 115 (2-3), 71-75, 2014
A beginner's guide to understanding and implementing the genetic modification of zebrafish
SA Rafferty, TA Quinn
Progress in biophysics and molecular biology 138, 3-19, 2018
Minimum Information about a Cardiac Electrophysiology Experiment (MICEE): standardised reporting for model reproducibility, interoperability, and data sharing
TA Quinn, S Granite, MA Allessie, C Antzelevitch, C Bollensdorff, G Bub, ...
Progress in biophysics and molecular biology 107 (1), 4-10, 2011
Ventricular diastolic stiffness predicts perioperative morbidity and duration of pleural effusions after the Fontan operation
CA Garofalo, SE Cabreriza, TA Quinn, AD Weinberg, BF Printz, DT Hsu, ...
Circulation 114 (1_supplement), I-56-I-61, 2006
Zebrafish heart as a model to study the integrative autonomic control of pacemaker function
MR Stoyek, TA Quinn, RP Croll, FM Smith
American Journal of Physiology-Heart and Circulatory Physiology 311 (3 …, 2016
Mechano-sensitivity of cardiac pacemaker function: pathophysiological relevance, experimental implications, and conceptual integration with other mechanisms of rhythmicity
TA Quinn, P Kohl
Progress in biophysics and molecular biology 110 (2-3), 257-268, 2012
Dynamics of neutrophil aggregation in couette flow revealed by videomicroscopy: effect of shear rate on two-body collision efficiency and doublet lifetime
HL Goldsmith, TA Quinn, G Drury, C Spanos, FA McIntosh, SI Simon
Biophysical journal 81 (4), 2020-2034, 2001
Rabbit models of cardiac mechano-electric and mechano-mechanical coupling
TA Quinn, P Kohl
Progress in biophysics and molecular biology 121 (2), 110-122, 2016
Population of computational rabbit-specific ventricular action potential models for investigating sources of variability in cellular repolarisation
P Gemmell, K Burrage, B Rodriguez, TA Quinn
PLoS One 9 (2), e90112, 2014
Mechanically induced ectopy via stretch-activated cation-nonselective channels is caused by local tissue deformation and results in ventricular fibrillation if triggered on the …
TA Quinn, H Jin, P Lee, P Kohl
Circulation: Arrhythmia and Electrophysiology 10 (8), e004777, 2017
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Artiklar 1–20