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Annals of the New York Academy of Sciences|June 18, 1998
The role of the vagus nerve in cytokine-to-brain communicationS F Maier, L E Goehler, M Fleshner, et al.Life Sciences|January 1, 1996
Macrophage stimulation reduces the cholesterol levels of stressed and unstressed ratsF X Brennan, M Fleshner, L R Watkins, et al.Brain Research|May 2, 1998
Exposure to inescapable but not escapable shock increases extracellular levels of 5-HT in the dorsal raphe nucleus of the ratS Maswood, J E Barter, L R Watkins, et al.Brain Research|February 14, 1997
Comparison of the effects of nucleus tractus solitarius and ventral medial medulla lesions on illness-induced and subcutaneous formalin-induced hyperalgesiasE P Wiertelak, B Roemer, S F Maier, et al.The American Journal of Physiology|June 11, 1999
Whole body protein kinetics using Phe and Tyr tracers: an evaluation of the accuracy of approximated flux valuesK R Short, S E Meek, N Moller, et al.Pharmacology, Biochemistry, and Behavior|November 1, 1984
Librium prevents the analgesia and shuttlebox escape deficit typically observed following inescapable shockR C Drugan, S M Ryan, T R Minor, et al.Brain Research|September 2, 1985
Coping and seizure susceptibility: control over shock protects against bicuculline-induced seizuresR C Drugan, T D McIntyre, H P Alpern, et al.Pharmacology, Biochemistry, and Behavior|August 1, 1990
Adinazolam both prevents and reverses the long-term reduction of daily activity produced by inescapable shockS F Maier, L H Silbert, W W Woodmansee, et al.Brain Research|November 21, 1994
Illness-induced hyperalgesia is mediated by spinal neuropeptides and excitatory amino acidsL R Watkins, E P Wiertelak, L E Furness, et al.Pharmacology, Biochemistry, and Behavior|December 1, 1994
Route of morphine administration modulates conditioned analgesic tolerance and hyperalgesiaJ E Grisel, E P Wiertelak, L R Watkins, et al.Pageof 20