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Hearing Research|March 1, 1989
Autoregulation of cochlear blood flow in normotensive and spontaneously hypertensive rats following intracerebroventricularly mediated adjustment of blood pressureW S Quirk, H A Dengerink, J W Harding, et al.Regulatory Peptides|March 19, 1993
Identification and characterization of a novel angiotensin binding site in cultured vascular smooth muscle cells that is specific for the hexapeptide (3-8) fragment of angiotensin II, angiotensin IVK L Hall, J M Hanesworth, A E Ball, et al.Brain Research|June 5, 1995
Autoradiographic identification of brain angiotensin IV binding sites and differential c-Fos expression following intracerebroventricular injection of angiotensin II and IV in ratsK A Roberts, L T Krebs, E A Kramár, et al.The American Journal of Anatomy|June 1, 1986
Different pharmacological anatomy in the paraventricular hypothalamic nucleus, supraoptic nucleus, and suprachiasmatic nucleus of rats: quantitative autoradiography on angiotensin II receptor binding sitesB H Hwang, J Y Wu, C M Wieczorek, et al.Brain Research|April 23, 1990
Intracerebroventricularly infused [D-Arg1]angiotensin III, is superior to [D-Asp1]angiotensin II, as a pressor agent in ratsJ W Wright, K A Roberts, V I Cook, et al.The Journal of Pharmacology and Experimental Therapeutics|April 24, 1999
Structural analysis of angiotensin IV receptor (AT4) from selected bovine tissuesJ H Zhang, J M Hanesworth, M F Sardinia, et al.Journal of Applied Behavior Analysis|April 14, 1999
An analysis of choice making in the assessment of young children with severe behavior problemsJ W Harding, D P Wacker, W K Berg, et al.Journal of Neurochemistry|August 1, 1987
Delayed cerebroventricular metabolism of [125I]angiotensins in the spontaneously hypertensive ratJ W Wright, M J Sullivan, C R Bredl, et al.Brain Research Bulletin|January 1, 1986
Quantitative autoradiography of 125I-[Sar1, Ile8]-angiotensin II binding in the brain of spontaneously hypertensive ratsB H Hwang, J W Harding, D K Liu, et al.Neuroscience|December 14, 2005
AT4 receptor activation increases intracellular calcium influx and induces a non-N-methyl-D-aspartate dependent form of long-term potentiationC J Davis, E A Kramár, A De, et al.Pageof 21