Howard L. Fields
Affiliations: | University of California, San Francisco, San Francisco, CA | ||
University of California, Berkeley, Berkeley, CA, United States |
Area:
opioid regulation of motivated behaviors, synaptic and circuit mechanisms, pain, addictionGoogle:
"Howard Fields"Mean distance: 11.72 (cluster 6) | S | N | B | C | P |
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Publications
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Davis KD, Basbaum AI, Bushnell MC, et al. (2023) International Association for the Study of Pain publications over the 50-year span. Pain. 164: S27-S30 |
Yang H, de Jong JW, Cerniauskas I, et al. (2021) Pain modulates dopamine neurons via a spinal-parabrachial-mesencephalic circuit. Nature Neuroscience |
Alter BJ, Aung MS, Strigo IA, et al. (2020) Onset hyperalgesia and offset analgesia: Transient increases or decreases of noxious thermal stimulus intensity robustly modulate subsequent perceived pain intensity. Plos One. 15: e0231124 |
Chen Y, Moutal A, Navratilova E, et al. (2020) Erratum: The prolactin receptor long isoform regulates nociceptor sensitization and opioid-induced hyperalgesia selectively in females (Science Translational Medicine DOI: 10.1126/scitranslmed.aay7550) Science Translational Medicine. 12 |
Chen Y, Moutal A, Navratilova E, et al. (2020) The prolactin receptor long isoform regulates nociceptor sensitization and opioid-induced hyperalgesia selectively in females. Science Translational Medicine. 12 |
Waung MW, Margolis EB, Charbit AR, et al. (2019) A Midbrain Circuit that Mediates Headache Aversiveness in Rats. Cell Reports. 28: 2739-2747.e4 |
Margolis EB, Fujita W, Devi LA, et al. (2017) Two delta opioid receptor subtypes are functional in single ventral tegmental area neurons, and can interact with the mu opioid receptor. Neuropharmacology |
Schwartz N, Miller C, Fields HL. (2017) Cortico-Accumbens Regulation of Approach-Avoidance Behavior Is Modified by Experience and Chronic Pain. Cell Reports. 19: 1522-1531 |
Margolis EB, Fields HL. (2016) Mu Opioid Receptor Actions in the Lateral Habenula. Plos One. 11: e0159097 |
Richard JM, Ambroggi F, Janak PH, et al. (2016) Ventral Pallidum Neurons Encode Incentive Value and Promote Cue-Elicited Instrumental Actions. Neuron |