Amanda Gabriele, Ph.D.

Affiliations: 
Texas A & M University, College Station, TX, United States 
Area:
Neurobiology of Learning and Memory
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"Amanda Gabriele"
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Parents

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Mark G. Packard grad student 2008 Texas A & M
 (Multiple memory systems and extinction: The neurobiological basis of latent extinction.)
Ronald E. See post-doc 2008-2011 MUSC
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Publications

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Goodman J, Gabriele A, Ornelas RAG, et al. (2022) Behavioral and Neural Mechanisms of Latent Extinction: A Historical Review. Neuroscience
Goodman J, Gabriele A, Packard MG. (2017) Differential effects of neural inactivation of the dorsolateral striatum on response and latent extinction. Behavioral Neuroscience. 131: 143-148
Goodman J, Gabriele A, Packard MG. (2016) Hippocampus NMDA receptors slectively mediate latent extinction of place learning. Hippocampus
Roberts DC, Gabriele A, Zimmer BA. (2013) Conflation of cocaine seeking and cocaine taking responses in IV self-administration experiments in rats: methodological and interpretational considerations. Neuroscience and Biobehavioral Reviews. 37: 2026-36
Gabriele A, Pacchioni AM, See RE. (2012) Dopamine and glutamate release in the dorsolateral caudate putamen following withdrawal from cocaine self-administration in rats. Pharmacology, Biochemistry, and Behavior. 103: 373-9
Gill MJ, Gabriele A, Reicheles CM. (2012) Rodent models of relapse: Drug treatments following abstinence and extinction Exposure Therapy: New Developments. 77-94
Gabriele A, See RE. (2011) Lesions and reversible inactivation of the dorsolateral caudate-putamen impair cocaine-primed reinstatement to cocaine-seeking in rats. Brain Research. 1417: 27-35
Pacchioni AM, Gabriele A, See RE. (2011) Dorsal striatum mediation of cocaine-seeking after withdrawal from short or long daily access cocaine self-administration in rats. Behavioural Brain Research. 218: 296-300
Gabriele A, See RE. (2010) Reversible inactivation of the basolateral amygdala, but not the dorsolateral caudate putamen, attenuates consolidation of cocaine-cue associative learning in a reinstatement model of drug-seeking. The European Journal of Neuroscience. 32: 1024-9
Pacchioni AM, Gabriele A, Donovan JL, et al. (2010) P-glycoprotein inhibition potentiates the behavioural and neurochemical actions of risperidone in rats. The International Journal of Neuropsychopharmacology / Official Scientific Journal of the Collegium Internationale Neuropsychopharmacologicum (Cinp). 13: 1067-77
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