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Frontiers in Physiology|May 16, 2012
Arterial-ventricular coupling with aging and diseasePaul D Chantler, Edward G LakattaCells|January 10, 2025
Ca2+/Calmodulin-Dependent Protein Kinase II (CaMKII) Regulates Basal Cardiac Pacemaker Function: Pros and ConsTatiana M Vinogradova, Edward G LakattaInternational Journal of Molecular Sciences|August 27, 2021
Dual Activation of Phosphodiesterase 3 and 4 Regulates Basal Cardiac Pacemaker Function and BeyondTatiana M Vinogradova, Edward G LakattaAmerican Journal of Physiology. Heart and Circulatory Physiology|March 16, 2010
A novel quantitative explanation for the autonomic modulation of cardiac pacemaker cell automaticity via a dynamic system of sarcolemmal and intracellular proteinsVictor A Maltsev, Edward G LakattaHeart, Lung & Circulation|September 11, 2007
Normal heart rhythm is initiated and regulated by an intracellular calcium clock within pacemaker cellsVictor A Maltsev, Edward G LakattaJournal of Molecular and Cellular Cardiology|July 4, 2009
Regulation of basal and reserve cardiac pacemaker function by interactions of cAMP-mediated PKA-dependent Ca2+ cycling with surface membrane channelsTatiana M Vinogradova, Edward G LakattaAmerican Journal of Physiology. Heart and Circulatory Physiology|January 13, 2009
Synergism of coupled subsarcolemmal Ca2+ clocks and sarcolemmal voltage clocks confers robust and flexible pacemaker function in a novel pacemaker cell modelVictor A Maltsev, Edward G LakattaCurrent Hypertension Reviews|March 23, 2011
Central Arterial Aging and Angiotensin II SignalingMingyi Wang, Benjamin Khazan, Edward G LakattaFrontiers in Bioscience (Landmark Edition)|March 11, 2009
RAGE signaling in inflammation and arterial agingLi Lin, Sungha Park, Edward G LakattaFrontiers in Physiology|March 11, 2015
Potential effects of intrinsic heart pacemaker cell mechanisms on dysrhythmic cardiac action potential firingYael Yaniv, Kenta Tsutsui, Edward G LakattaPageof 40