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Circulation Research|April 1, 1983
Evidence for the existence of a family of biologically active angiotensin I-like peptides in the dog central nervous systemA Husain, F M Bumpus, R R Smeby, et al.Regulatory Peptides|August 22, 1995
Characterization of a functional angiotensin IV receptor on coronary microvascular endothelial cellsK L Hall, S Venkateswaran, J M Hanesworth, et al.Journal of Hypertension|October 1, 1990
Aminopeptidase-induced elevations and reductions in blood pressure in the spontaneously hypertensive ratJ W Wright, S Mizutani, C E Murray, et al.Federation Proceedings|October 1, 1980
The benzodiazepine receptor of mammalian brainR C Speth, R W Johnson, J Regan, et al.Brain Research|November 12, 1984
Characterization of angiotensin binding to gerbil brain membranes using [125I]angiotensin III as the radioligandE P Petersen, C G Camara, R H Abhold, et al.The American Journal of Physiology|December 1, 1989
Structure-function analyses of brain angiotensin control of pressor action in ratsJ W Wright, L L Jensen, K A Roberts, et al.Peptides|March 1, 1989
Brain angiotensin: critical role in the ongoing regulation of body fluid homeostasis and cardiovascular functionJ W Harding, L L Jensen, W S Quirk, et al.Brain Research Bulletin|January 1, 1993
Hypothalamic angiotensin release in response to AII or glutamic acid stimulation of the SFO in ratsJ W Wright, K A Roberts, L A Stubley, et al.Journal of Hypertension. Supplement : Official Journal of the International Society of Hypertension|December 1, 1986
Heightened pressor effect and dipsogenicity to intracerebroventricularly applied angiotensin II and III in spontaneously hypertensive ratsJ W Wright, M J Sullivan, W S Quirk, et al.Brain Research|September 15, 1987
Heightened blood pressure and drinking responsiveness to intracerebroventricularly applied angiotensins in the spontaneously hypertensive ratJ W Wright, M J Sullivan, W S Quirk, et al.Pageof 21