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Brain Research|May 14, 1990
Morphine analgesia and acute physical dependence: rapid onset of two opposing, dose-related processesD H Kim, H L Fields, N M BarbaroThe Journal of Pharmacology and Experimental Therapeutics|September 1, 1986
Action at the mu receptor is sufficient to explain the supraspinal analgesic effect of opiatesF G Fang, H L Fields, N M LeeThe Journal of Neuroscience : the Official Journal of the Society for Neuroscience|January 1, 1987
Evidence for two classes of nociceptive modulating neurons in the periaqueductal grayM M Heinricher, Z F Cheng, H L FieldsBrain Research|September 8, 1987
Dose-dependent antinociceptive action of neurotensin microinjected into the rostroventromedial medulla of the ratF G Fang, J L Moreau, H L FieldsJournal of Neurophysiology|May 1, 1984
Relations among threshold, spike height, electrode distance, and conduction velocity in electrical stimulation of certain medullospinal neuronsI D Hentall, G Zorman, S Kansky, et al.Nature|December 15, 1983
Evidence that disinhibition of brain stem neurones contributes to morphine analgesiaH L Fields, H Vanegas, I D Hentall, et al.Neuroscience|July 22, 2008
Contributions of the amygdala and medial prefrontal cortex to incentive cue respondingA Ishikawa, F Ambroggi, S M Nicola, et al.Brain Research|March 18, 1982
Lumbar intrathecal naloxone blocks analgesia produced by microstimulation of the ventromedial medulla in the ratG Zorman, G Belcher, J E Adams, et al.The Journal of Comparative Neurology|February 10, 1997
GABA-immunoreactive boutons contact identified OFF and ON cells in the nucleus raphe magnusK Skinner, H L Fields, A I Basbaum, et al.Journal of Neurophysiology|May 1, 1984
An estimate of minimum number of brain stem neurons required for inhibition of a flexion reflexI D Hentall, G Zorman, S Kansky, et al.Pageof 25