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Clinical Science and Molecular Medicine|September 1, 1976
Comparison of heart sarcolemmal enzyme activities in normal and cardiomyopathic (UM-X7.1) hamstersN S Dhalla, J N Singh, E Bajusz, et al.American Journal of Physiology. Heart and Circulatory Physiology|May 24, 2003
Preconditioning attenuates ischemia-reperfusion-induced remodeling of Na+-K+-ATPase in heartsAdel B Elmoselhi, Anton Lukas, Petr Ostadal, et al.Biochemical Pharmacology|June 6, 2003
Modification of intracellular free calcium in cultured A10 vascular smooth muscle cells by exogenous phosphatidic acidPraveen Bhugra, Yan-Jun Xu, Satyajeet Rathi, et al.Canadian Journal of Physiology and Pharmacology|December 18, 2018
β-1 adrenoceptors and AT1 receptors may not be involved in catecholamine-induced lethal arrhythmias <sup>1</sup>Adriana Adameova, Vijayan Elimban, Paul K Ganguly, et al.Circulation Research|August 1, 1988
Defects in sarcolemmal Ca2+ transport in hearts due to induction of calcium paradoxN Makino, V Panagia, M P Gupta, et al.Cardiovascular Drugs and Therapy|February 1, 1991
Effects of some L-carnitine derivatives on heart membrane ATPasesN S Dhalla, F Kolár, K R Shah, et al.Canadian Journal of Physiology and Pharmacology|July 13, 2012
Implications of protease activation in cardiac dysfunction and development of genetic cardiomyopathy in hamstersAlison L Müller, Darren Freed, Larry Hryshko, et al.The Canadian Journal of Cardiology|March 1, 1985
Adrenochrome uptake and subcellular distribution in the isolated perfused rat heartL Fliegel, S Takeo, R E Beamish, et al.Molecular and Cellular Biochemistry|February 12, 1992
Alterations in Ca(2+)-channels during the development of diabetic cardiomyopathyS L Lee, I Ostadalova, F Kolar, et al.Biochemical and Biophysical Research Communications|July 16, 1985
Activation of Ca2+-stimulated ATPase by phospholipid N-methylation in cardiac sarcoplasmic reticulumP K Ganguly, V Panagia, K Okumura, et al.Pageof 54