Sound induces analgesia through corticothalamic circuits is a research paper published in Science (2022). On theSindex it has a DataRank of 0. It has been cited 126 times.
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National Institutes of Health
Grant: 1ZIADE000757-04
Somatosensation and pain
Intramural NIH HHS
Grant: Z99 DE999999
Intramural NIH HHS
Grant: ZIA DE000757
Fields of Study
MeSH Terms
Keywords
Additional file 1 of Exploring combat stress exposure effects on burn pain in a female rodent model
Additional file 1 of Exploring combat stress exposure effects on burn pain in a female rodent model
Additional file 1 of Microglia sustain anterior cingulate cortex neuronal hyperactivity in nicotine-induced pain
Additional file 1 of Microglia sustain anterior cingulate cortex neuronal hyperactivity in nicotine-induced pain
Additional file 5 of Glucose competition between endothelial cells in the blood-spinal cord barrier and infiltrating regulatory T cells is linked to sleep restriction-induced hyperalgesia
Additional file 5 of Glucose competition between endothelial cells in the blood-spinal cord barrier and infiltrating regulatory T cells is linked to sleep restriction-induced hyperalgesia
Additional file 6 of Glucose competition between endothelial cells in the blood-spinal cord barrier and infiltrating regulatory T cells is linked to sleep restriction-induced hyperalgesia
Additional file 6 of Glucose competition between endothelial cells in the blood-spinal cord barrier and infiltrating regulatory T cells is linked to sleep restriction-induced hyperalgesia
Additional file 4 of Glucose competition between endothelial cells in the blood-spinal cord barrier and infiltrating regulatory T cells is linked to sleep restriction-induced hyperalgesia
Additional file 3 of Glucose competition between endothelial cells in the blood-spinal cord barrier and infiltrating regulatory T cells is linked to sleep restriction-induced hyperalgesia
Additional file 2 of Glucose competition between endothelial cells in the blood-spinal cord barrier and infiltrating regulatory T cells is linked to sleep restriction-induced hyperalgesia
Additional file 1 of Glucose competition between endothelial cells in the blood-spinal cord barrier and infiltrating regulatory T cells is linked to sleep restriction-induced hyperalgesia
Additional file 3 of Glucose competition between endothelial cells in the blood-spinal cord barrier and infiltrating regulatory T cells is linked to sleep restriction-induced hyperalgesia
Additional file 4 of Glucose competition between endothelial cells in the blood-spinal cord barrier and infiltrating regulatory T cells is linked to sleep restriction-induced hyperalgesia
Additional file 2 of Glucose competition between endothelial cells in the blood-spinal cord barrier and infiltrating regulatory T cells is linked to sleep restriction-induced hyperalgesia
Additional file 1 of Glucose competition between endothelial cells in the blood-spinal cord barrier and infiltrating regulatory T cells is linked to sleep restriction-induced hyperalgesia