James H. Peters

Affiliations: 
Veterinary & Comparative Anatomy, Pharmacology & Physiology Washington State University, Pullman, WA, United States 
Area:
NTS, solitary tract nucleus, vagal afferents, autonomic
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"James Peters"
Mean distance: 18.42 (cluster 11)
 
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Publications

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Ragozzino FJ, Karatsoreos IN, Peters JH. (2024) Principles of synaptic encoding of brainstem circadian rhythms. Experimental Physiology
Arnold RA, Fowler DK, Peters JH. (2023) TRPV1 ENHANCES CHOLECYSTOKININ SIGNALING IN PRIMARY VAGAL AFFERENT NEURONS AND MEDIATES THE CENTRAL EFFECTS ON SPONTANEOUS GLUTAMATE RELEASE IN THE NTS. American Journal of Physiology. Cell Physiology
Ragozzino FJ, Peterson BA, Karatsoreos IN, et al. (2023) Circadian regulation of glutamate release pathways shapes synaptic throughput in the brainstem nucleus of the solitary tract (NTS). The Journal of Physiology
Ragozzino FJ, Arnold RA, Fenwick AJ, et al. (2020) TRPM3 expression and control of glutamate release from primary vagal afferent neurons. Journal of Neurophysiology
Ragozzino FJ, Arnold RA, Kowalski CW, et al. (2020) Corticosterone inhibits vagal afferent glutamate release in the Nucleus of the Solitary Tract via retrograde endocannabinoid signaling. American Journal of Physiology. Cell Physiology
Kowalski CW, Ragozzino FJ, Lindberg JEM, et al. (2020) Cannabidiol activation of vagal afferent neurons requires TRPA1. Journal of Neurophysiology
Kowalski CW, Lindberg JEM, Fowler DK, et al. (2020) Contributing mechanisms underlying desensitization of CCK-induced activation of primary nodose ganglia neurons. American Journal of Physiology. Cell Physiology
Fenwick AJ, Fowler DK, Wu SW, et al. (2017) Direct Anandamide Activation of TRPV1 Produces Divergent Calcium and Current Responses. Frontiers in Molecular Neuroscience. 10: 200
Wu SW, Fowler DK, Shaffer FJ, et al. (2017) Ethyl vanillin activates TRPA1. The Journal of Pharmacology and Experimental Therapeutics
Fowler DK, Peters JH, Williams C, et al. (2017) Redundant Postsynaptic Functions of SynCAMs 1-3 during Synapse Formation. Frontiers in Molecular Neuroscience. 10: 24
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