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Endocrinology|August 1, 1986
Identification of binding sites for an insulin-like growth factor (IGF-I) in the median eminence of the rat brain by quantitative autoradiographyN J Bohannon, D P Figlewicz, E S Corp, et al.Brain Research|December 29, 1999
Insulin and leptin: dual adiposity signals to the brain for the regulation of food intake and body weightD G Baskin, D Figlewicz Lattemann, R J Seeley, et al.Peptides|May 1, 1990
Insulin binding to brain capillaries is reduced in genetically obese, hyperinsulinemic Zucker ratsM W Schwartz, D F Figlewicz, S E Kahn, et al.The Journal of Clinical Investigation|November 1, 1987
Norepinephrine metabolism in humans. Kinetic analysis and modelO A Linares, J A Jacquez, L A Zech, et al.The American Journal of Physiology|February 1, 1988
Effect of sodium-restricted diet and posture on norepinephrine kinetics in humansO A Linares, L A Zech, J A Jacquez, et al.The Journal of Clinical Investigation|October 1, 1993
Saturable transport of insulin from plasma into the central nervous system of dogs in vivo. A mechanism for regulated insulin delivery to the brainG D Baura, D M Foster, D Porte, et al.Appetite|December 1, 1986
Intraventricular insulin reduces food intake and body weight of lean but not obese Zucker ratsH Ikeda, D B West, J J Pustek, et al.The Journal of Clinical Investigation|May 1, 1973
Glucagon release induced by pancreatic nerve stimulation in the dogE B Marliss, L Girardier, J Seydoux, et al.Peptides|January 1, 1986
Brain insulin binding is decreased in Wistar Kyoto rats carrying the 'fa' geneD P Figlewicz, H Ikeda, T R Hunt, et al.American Heart Journal|June 18, 1998
Cardiac electrophysiologic effects of norepinephrine in human beingsR Weiss, B P Knight, M Bahu, et al.Pageof 31