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Filters: 1 is biblio_year:2020 and Author is Wayne R. Giles [Reset Search]
"A computational method for identifying an optimal combination of existing drugs to repair the action potentials of SQT1 ventricular myocytes." PLoS Computational Biology 17 (2021): e1009233.
"From Millimeters to Micrometers; Re-introducing Myocytes in Models of Cardiac Electrophysiology." Frontiers in Physiology 12 (2021): 763584.
"Computational translation of drug effects from animal experiments to human ventricular myocytes." Nature Scientific Reports (2020): 10537.
"Na+ Current Expression in Human Atrial Myofibroblasts: Its Identity and Functional Consequences." Frontiers in Physiology 5 (2014): 275.
"Ca(2+) Entry Through TRP-C Channels Regulates Fibroblast Biology in Chronic Atrial Fibrillation." Circulation 126 (2012): 2039-2041.
"Electrotonic Coupling Between Human Atrial Myocytes and Fibroblasts Alters Excitability and Repolarization." Biophysical Journal 97 (2009): 2179-2190.
Simula.SC.448.pdf (986.82 KB)
"K+ Current Changes Account for the Rate Dependence of the Action Potential in the Human Atrial Myocyte." American Journal of Physiology - Heart and Circulatory Physiology 297 (2009): 1398-1410.
Simula.SC.450.pdf (1.52 MB)
Coupling of Human Atrial Myocytes and Myofibroblasts Can Lead to Conduction Disturbances In HRS Scientific Sessions 2008., 2008.
"Mathematical Simulations of Ligand-Gated and Specific Cell-Type Effects in the Human Atrium." Progress in Biophysics and Molecular Biology 98 (2008): 161-70.