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Novartis Foundation Symposium|August 8, 2002
The sarcoplasmic reticulum and smooth muscle function: evidence from transgenic miceR J Paul, G E Shull, E G KraniasCardioscience|December 1, 1993
Effect of thyroid status on phosphatidylinositols in rat heartG Jakab, E Kiss, E G Kranias, et al.The Journal of Physiology|August 15, 1997
Calcium sparks and excitation-contraction coupling in phospholamban-deficient mouse ventricular myocytesL F Santana, E G Kranias, W J LedererThe Journal of Biological Chemistry|June 20, 2020
Phosphorylation of cardiac myosin-binding protein-C contributes to calcium homeostasisMohit Kumar, Kobra Haghighi, Evangelia G Kranias, et al.Biochemical and Biophysical Research Communications|September 24, 1996
Simultaneous measurement of intracellular calcium and ventricular function in the phospholamban-deficient mouse heartT G Hampton, E G Kranias, J P MorganCardioscience|March 1, 1994
Effect of thyroid status on basal phosphorylation of cardiac myofibrillar phosphoproteins in ratsG Jakab, E Kiss, E G Kranias, et al.Biochemistry|November 11, 1980
Mechanism of the stimulation of calcium ion dependent adenosine triphosphatase of cardiac sarcoplasmic reticulum by adenosine 3',5'-monophosphate dependent protein kinaseE G Kranias, F Mandel, T Wang, et al.Journal of AAPOS : the Official Publication of the American Association for Pediatric Ophthalmology and Strabismus|October 20, 2004
Iris cyst simulating melanomaK Gogos, C Tyradellis, A G Spaulding, et al.Circulation Research|January 1, 1989
Inotropic responses to isoproterenol and phosphodiesterase inhibitors in intact guinea pig hearts: comparison of cyclic AMP levels and phosphorylation of sarcoplasmic reticulum and myofibrillar proteinsS T Rapundalo, R J Solaro, E G KraniasBasic Research in Cardiology|January 1, 1997
The relative phospholamban and SERCA2 ratio: a critical determinant of myocardial contractilityK L Koss, I L Grupp, E G KraniasPageof 41