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Brain Research|May 13, 1985
Spinal pain suppression mechanisms may differ for phasic and tonic painS M Ryan, L R Watkins, D J Mayer, et al.Brain Research|January 23, 1984
Opiate and non-opiate analgesia induced by inescapable tail-shock: effects of dorsolateral funiculus lesions and decerebrationL R Watkins, R Drugan, R L Hyson, et al.Journal of Internal Medicine|January 20, 2005
Immune regulation of central nervous system functions: from sickness responses to pathological painL R Watkins, S F MaierBrain Research|October 16, 1995
Intracerebroventricular interleukin-1 receptor antagonist blocks the enhancement of fear conditioning and interference with escape produced by inescapable shockS F Maier, L R WatkinsAnnual Review of Psychology|February 7, 2001
The pain of being sick: implications of immune-to-brain communication for understanding painL R Watkins, S F MaierProceedings of the National Academy of Sciences of the United States of America|July 8, 1999
Implications of immune-to-brain communication for sickness and painL R Watkins, S F MaierPsychological Review|February 5, 1998
Cytokines for psychologists: implications of bidirectional immune-to-brain communication for understanding behavior, mood, and cognitionS F Maier, L R WatkinsScience (New York, N.Y.)|June 11, 1982
Organization of endogenous opiate and nonopiate pain control systemsL R Watkins, D J MayerBrain Research|June 24, 1982
Involvement of spinal opioid systems in footshock-induced analgesia: antagonism by naloxone is possible only before induction of analgesiaL R Watkins, D J MayerThe American Psychologist|December 1, 1994
Psychoneuroimmunology. The interface between behavior, brain, and immunityS F Maier, L R Watkins, M FleshnerPageof 31