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Journal of Neurophysiology|April 18, 1998
Endogenous opioid peptides acting at mu-opioid receptors in the dorsal horn contribute to midbrain modulation of spinal nociceptive neuronsD Budai, H L FieldsScience (New York, N.Y.)|March 27, 1970
Somatovisceral pathway: rapidly conducting fibers in the spinal cordH L Fields, D L WinterNeuroscience|October 1, 1996
Endogenous opioid-mediated inhibition of putative pain-modulating neurons in rat rostral ventromedial medullaZ Z Pan, H L FieldsNeuroscience|October 22, 2003
Basolateral amygdala lesions impair both cue- and cocaine-induced reinstatement in animals trained on a discriminative stimulus taskI A Yun, H L FieldsNeuroscience|July 1, 1983
Actions of opiates, substance P, and serotonin on the excitability of primary afferent terminals and observations on interneuronal activity in the neonatal rat's dorsal horn in vitroI D Hentall, H L FieldsJournal of Neurophysiology|November 1, 1979
Segmental and descending influences on intraspinal thresholds of single C-fibersI D Hentall, H L FieldsBrain Research|January 11, 1991
Evidence that inhibition of a nociceptive flexion reflex by stimulation in the rostroventromedial medulla in rats occurs at a premotoneuronal levelM K Floeter, H L FieldsBrain Research|November 5, 1986
Evidence for GABA involvement in midbrain control of medullary neurons that modulate nociceptive transmissionJ L Moreau, H L FieldsBrain : a Journal of Neurology|April 1, 1996
The relationship of pain, allodynia and thermal sensation in post-herpetic neuralgiaM C Rowbotham, H L FieldsNeuroscience|October 1, 1996
Endogenous opioids acting at a medullary mu-opioid receptor contribute to the behavioral antinociception produced by GABA antagonism in the midbrain periaqueductal grayS M Roychowdhury, H L FieldsPageof 25