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The Journal of Physiology|March 1, 1993
Electrical properties of resting and acetylcholine-stimulated endothelium in intact rat aortaS M Marchenko, S O SageThe Journal of Physiology|April 1, 1996
Calcium-activated potassium channels in the endothelium of intact rat aortaS M Marchenko, S O SageThe American Journal of Physiology|August 1, 1994
Smooth muscle cells affect endothelial membrane potential in rat aortaS M Marchenko, S O SageExperimental Physiology|February 7, 2001
Hyperosmotic but not hyposmotic stress evokes a rise in cytosolic Ca2+ concentration in endothelium of intact rat aortaS M Marchenko, S O SageThe Journal of Physiology|January 15, 1997
A novel mechanosensitive cationic channel from the endothelium of rat aortaS M Marchenko, S O SageExperimental Physiology|February 9, 2000
Effects of shear stress on [Ca2+]i and membrane potential of vascular endothelium of intact rat blood vesselsS M Marchenko, S O SageThe American Journal of Physiology|June 1, 1994
Mechanism of acetylcholine action on membrane potential of endothelium of intact rat aortaS M Marchenko, S O SageThe Journal of Physiology|December 1, 1995
Cytosolic calcium concentration in resting and stimulated endothelium of excised intact rat aortaY M Usachev, S M Marchenko, S O SageBulletin of Experimental Biology and Medicine|June 13, 2003
Acetylcholine and ATP hyperpolarize endothelium via activation of different types of Ca(2+)-activated K+ channelsS M MarchenkoNeirofiziologiia = Neurophysiology|January 1, 1991
[Pharmacologic analysis of the effect of gamma-D-glutamylglycine on kainate and quisqualate receptors]S M MarchenkoPageof 11