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Sayegh, Fares; Herraiz, Laurie; Colom, Morgane; Lopez, Sébastien; Rampon, Claire; Dahan, Lionel – Learning & Memory, 2022
Dopamine participates in encoding memories and could either encode rewarding/aversive value of unconditioned stimuli or act as a novelty signal triggering contextual learning. Here we show that intraperitoneal injection of the dopamine D1/5R antagonist SCH23390 impairs contextual fear conditioning and tone-shock association, while intrahippocampal…
Descriptors: Cognitive Processes, Memory, Fear, Conditioning
Sekeres, Melanie J.; Moscovitch, Morris; Grady, Cheryl L.; Sullens, D. Gregory; Winocur, Gordon – Learning & Memory, 2020
Conditioned fear memories that are context-specific shortly after conditioning generalize over time. We exposed rats to a context reminder 30 d after conditioning, which served to reinstate context-specificity, and investigated how this reminder alters retrieval-induced activity in the hippocampus and anterior cingulate cortex (aCC) relative to a…
Descriptors: Memory, Animals, Brain Hemisphere Functions, Conditioning
Steinfurth, Elisa C. K.; Kanen, Jonathan W.; Raio, Candace M.; Clem, Roger L.; Huganir, Richard L.; Phelps, Elizabeth A. – Learning & Memory, 2014
Extinction training during reconsolidation has been shown to persistently diminish conditioned fear responses across species. We investigated in humans if older fear memories can benefit similarly. Using a Pavlovian fear conditioning paradigm we compared standard extinction and extinction after memory reactivation 1 d or 7 d following acquisition.…
Descriptors: Learning Processes, Fear, Memory, Conditioning
Gilmartin, Marieke R.; Kwapis, Janine L.; Helmstetter, Fred J. – Learning & Memory, 2013
Activation of "N"-methyl-D-aspartate receptors (NMDAR) in the prelimbic medial prefrontal cortex (PL mPFC) is necessary for the acquisition of both trace and contextual fear memories, but it is not known how specific NR2 subunits support each association. The NR2B subunit confers unique properties to the NMDAR and may differentially…
Descriptors: Brain, Fear, Conditioning, Biochemistry
Thomas, Brian L.; Cutler, Marlo; Novak, Cheryl – Learning and Motivation, 2012
Two studies using an ABA design examined the Extinction and renewal of conditioned barpress suppression. Following lights-off and foot shock pairings in Context A, rats were placed in Context B and were given either a standard counterconditioning procedure where the lights-off CS was paired with a novel food US delivered freely or a modified…
Descriptors: Fear, Cognitive Development, Inhibition, Animals
Beck, Hall P.; Levinson, Sharman; Irons, Gary – American Psychologist, 2009
In 1920, John Watson and Rosalie Rayner claimed to have conditioned a baby boy, Albert, to fear a laboratory rat. In subsequent tests, they reported that the child's fear generalized to other furry objects. After the last testing session, Albert disappeared, creating one of the greatest mysteries in the history of psychology. This article…
Descriptors: Fear, Child Psychology, Emotional Response, Conditioning
Baratta, Michael V.; Lucero, Thomas R.; Amat, Jose; Watkins, Linda R.; Maier, Steven F. – Learning & Memory, 2008
A prior experience of behavioral control over a stressor interferes with subsequent Pavlovian fear conditioning, and this effect is dependent on the activation of the ventral medial prefrontal cortex (mPFCv) at the time of the initial experience with control. It is unknown whether mPFCv activity is necessary during fear learning and/or testing for…
Descriptors: Testing, Classical Conditioning, Brain, Fear
Huff, Nicole C.; Wright-Hardesty, Karli J.; Higgins, Emily A.; Matus-Amat, Patricia; Rudy, Jerry W. – Learning & Memory, 2005
We report that post-training inactivation of basolateral amygdala region (BLA) with muscimol impaired memory for contextual-fear conditioning (as measured by freezing) and intra-BLA norepinephrine enhanced this memory. However, pre-exposure to the context eliminated both of these effects. These findings provide a likely explanation of why an…
Descriptors: Memory, Conditioning, Fear, Context Effect
Tinsley, Matthew R.; Quinn, Jennifer J.; Fanselow, Michael S. – Learning & Memory, 2004
Aversive conditioning is an ideal model for studying cholinergic effects on the processes of learning and memory for several reasons. First, deficits produced by selective lesions of the anatomical structures shown to be critical for Pavlovian fear conditioning and inhibitory avoidance (such as the amygdala and hippocampus) resemble those deficits…
Descriptors: Memory, Fear, Classical Conditioning, Inhibition