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Journal of Molecular and Cellular Cardiology|October 21, 2000
Sulphonylurea-sensitive channels and NO-cGMP pathway modulate the heart rate response to vagal nerve stimulation in vitroS C Almond, D J PatersonThe American Journal of Physiology|January 1, 1996
Role of K+ in regulating hypoxic cerebral blood flow in the rat: effect of glibenclamide and ouabainJ M Reid, D J PatersonJournal of Applied Physiology (Bethesda, Md. : 1985)|November 1, 1994
Role of Ca2+ in protecting the heart from hyperkalemia and acidosis in the rabbit: implications for exerciseS P Leitch, D J PatersonThe Journal of Experimental Medicine|November 1, 1987
An intermediate cell in thymocyte differentiation that expresses CD8 but not CD4 antigenD J Paterson, A F WilliamsActa Physiologica Scandinavica|April 1, 1996
Restoration of cardiac contraction by angiotensin II during raised [K+]O in the rabbitD M Ryan, D J PatersonCardiovascular Research|June 28, 2000
Activation of sulphonylurea-sensitive channels and the NO-cGMP pathway decreases the heart rate response to sympathetic nerve stimulationR M Mohan, D J PatersonRespiration Physiology|May 1, 1991
Effect of oxygen on potassium-excited ventilation in the decerebrate catD J Paterson, P C NyeThe Journal of Physiology|October 12, 2018
Neurocardiac regulation: from cardiac mechanisms to novel therapeutic approachesE N Bardsley, D J PatersonThe Journal of Physiology|January 2, 2003
Enhanced neuronal nitric oxide synthase expression is central to cardiac vagal phenotype in exercise-trained miceE J F Danson, D J PatersonJournal of Hypertension|November 14, 1998
Hypercapnic cerebral blood flow in spontaneously hypertensive ratsG Heinert, B Casadei, D J PatersonPageof 33