Showing results (11-20 of 30) with videos related to
Sort By:
Pageof 3
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|July 8, 2024
Generation and Characterization of a Novel <i>Prkcd-</i>Cre Rat ModelSanne Toivainen, Michele Petrella, Li Xu, et al.The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|March 28, 2014
microRNA-206 in rat medial prefrontal cortex regulates BDNF expression and alcohol drinkingJenica D Tapocik, Estelle Barbier, Meghan Flanigan, et al.Addiction Biology|June 9, 2016
Proinflammatory signaling regulates voluntary alcohol intake and stress-induced consumption after exposure to social defeat stress in miceCamilla Karlsson, Jesse R Schank, Faazal Rehman, et al.Alcoholism, Clinical and Experimental Research|September 1, 2016
Melanin-Concentrating Hormone and Its MCH-1 Receptor: Relationship Between Effects on Alcohol and Caloric IntakeCamilla Karlsson, Abdul Maruf Asif Aziz, Faazal Rehman, et al.Research Square|October 3, 2025
Global Changes in Gene Expression and Splicing in Alcoholic Liver DiseaseIlya O Blokhin, Derek Van Booven, Josepmaria Argemi, et al.Science (New York, N.Y.)|June 23, 2018
A molecular mechanism for choosing alcohol over an alternative rewardEric Augier, Estelle Barbier, Russell S Dulman, et al.Scientific Reports|May 21, 2026
Global changes in gene expression and splicing in alcoholic liver diseaseIlya O Blokhin, Derek Van Booven, Josepmaria Argemi, et al.Addiction Biology|February 10, 2021
Stress-induced escalation of alcohol self-administration, anxiety-like behavior, and elevated amygdala Avp expression in a susceptible subpopulation of ratsRiccardo Barchiesi, Kanat Chanthongdee, Esi Domi, et al.Psychopharmacology|September 28, 2014
Polymorphism in the corticotropin-releasing factor receptor 1 (CRF1-R) gene plays a role in shaping the high anxious phenotype of Marchigian Sardinian alcohol-preferring (msP) ratsAndrea Cippitelli, Lydia O Ayanwuyi, Estelle Barbier, et al.Neuropharmacology|February 16, 2024
Pharmacological blockage of NOP receptors decreases ventral tegmental area dopamine neuronal activity through GABA<sub>B</sub> receptor-mediated mechanismMichele Petrella, Anna Maria Borruto, Lorenzo Curti, et al.Pageof 3