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Brain Research|January 2, 1984
The neurochemical basis of footshock analgesia: the role of spinal cord serotonin and norepinephrineL R Watkins, J N Johannessen, I B Kinscheck, et al.Brain Research|April 15, 1982
Failure of spinal cord serotonin depletion to alter analgesia elicited from the periaqueductal grayJ N Johannessen, L R Watkins, S M Carlton, et al.Brain Research|August 5, 1982
Footshock induced analgesia is dependent neither on pituitary nor sympathetic activationL R Watkins, D A Cobelli, H H Newsome, et al.Brain Research|October 16, 1983
The neural basis of footshock analgesia: the role of specific ventral medullary nucleiL R Watkins, E G Young, I B Kinscheck, et al.Science (New York, N.Y.)|January 21, 1983
Evidence for the neuropeptide cholecystokinin as an antagonist of opiate analgesiaP L Faris, B R Komisaruk, L R Watkins, et al.Behavioural Brain Research|October 8, 1999
Opioid-dependent effects of inescapable shock on escape behavior and conditioned fear responding are mediated by the dorsal raphe nucleusR E Grahn, S Maswood, M B McQueen, et al.Behavioral Neuroscience|August 1, 1995
The dorsal raphe nucleus is a site of action mediating the behavioral effects of the benzodiazepine receptor inverse agonist DMCMS F Maier, C R Busch, S Maswood, et al.Neuropharmacology|December 3, 2014
The therapeutic potential of interleukin-10 in neuroimmune diseasesA J Kwilasz, P M Grace, P Serbedzija, et al.Physiology & Behavior|December 1, 1993
Modulation of the in vivo antibody response by a benzodiazepine inverse agonist (DMCM) administered centrally or peripherallyM Fleshner, M M Brohm, M L Laudenslager, et al.Neuroscience and Biobehavioral Reviews|February 13, 2001
The immune system and memory consolidation: a role for the cytokine IL-1betaC Rachal Pugh, M Fleshner, L R Watkins, et al.Pageof 31