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Brain Research|January 7, 1982
ACTH 1-24 and lysine vasopressin selectively activate dopamine synthesis in frontal cortexR L Delanoy, N R Kramarcy, A J DunnThe Journal of Pharmacology and Experimental Therapeutics|December 1, 1990
The involvement of central noradrenergic systems and corticotropin-releasing factor in defensive-withdrawal behavior in ratsX M Yang, A L Gorman, A J DunnPeptides|May 5, 2001
The role of CRH in behavioral responses to stressG N Smagin, S C Heinrichs, A J DunnPharmacology, Biochemistry, and Behavior|January 1, 1976
Neurochemical responses of mice to ACTH and lysine vasopressinA J Dunn, P M Iuvone, H D ReesBrain Research Bulletin|January 1, 1996
The role of cerebral noradrenergic systems in the Fos response to interleukin-1A H Swiergiel, A J Dunn, E A StoneBiochemical Pharmacology|October 15, 1982
Catecholamine metabolism in brain slices. Determination of relevant precursor pool and the effects of elevated K+R L Delanoy, G D Hunter, A J DunnPharmacology, Biochemistry, and Behavior|August 26, 1999
Endotoxin- and interleukin-1-induced hypophagia are not affected by adrenergic, dopaminergic, histaminergic, or muscarinic antagonistsA H Swiergiel, T Burunda, B Patterson, et al.Neurochemistry International|January 4, 2001
Peripheral interleukin-6 administration increases extracellular concentrations of serotonin and the evoked release of serotonin in the rat striatumJ Zhang, L Terreni, De Simoni MG, et al.Neuroimmunomodulation|December 22, 2000
Catecholamine, indoleamine and corticosteroid responses in mice bearing tumorsH E Chuluyan, R M Wolcott, R Chervenak, et al.Neuroendocrinology|January 1, 1993
Central 5-HT1A receptors inhibit adrenocortical secretionJ E Welch, G E Farrar, A J Dunn, et al.Pageof 15