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Showing 46 to 60 of 162 results Save | Export
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Cooper, Jeffrey C.; Dunne, Simon; Furey, Teresa; O'Doherty, John P. – Journal of Cognitive Neuroscience, 2012
The dorsal striatum plays a key role in the learning and expression of instrumental reward associations that are acquired through direct experience. However, not all learning about instrumental actions require direct experience. Instead, humans and other animals are also capable of acquiring instrumental actions by observing the experiences of…
Descriptors: Video Technology, Operant Conditioning, Observational Learning, Prediction
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Calandreau, Ludovic; Desgranges, Bertrand; Jaffard, Robert; Desmedt, Aline – Learning & Memory, 2010
The aim of the present experiment was to directly assess the role of the glutamatergic hippocampal-lateral septal (HPC-LS) neurotransmission in tone and contextual fear conditioning. We found that pretraining infusion of glutamatergic acid into the lateral septum promotes tone conditioning and concomitantly disrupts contextual conditioning.…
Descriptors: Context Effect, Conditioning, Fear, Experiments
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Erickson, Martha A.; Maramara, Lauren A.; Lisman, John – Journal of Cognitive Neuroscience, 2010
Recent work showed that short-term memory (STM) is selectively reduced in GluR1 knockout mice. This raises the possibility that a form of synaptic modification dependent on GluR1 might underlie STM. Studies of synaptic plasticity have shown that stimuli too weak to induce long-term potentiation induce short-term potentiation (STP), a phenomenon…
Descriptors: Animals, Stimuli, Short Term Memory, Conditioning
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Wells, Audrey M.; Lasseter, Heather C.; Xie, Xiaohu; Cowhey, Kate E.; Reittinger, Andrew M.; Fuchs, Rita A. – Learning & Memory, 2011
Contextual stimulus control over instrumental drug-seeking behavior relies on the reconsolidation of context-response-drug associative memories into long-term memory storage following retrieval-induced destabilization. According to previous studies, the basolateral amygdala (BLA) and dorsal hippocampus (DH) regulate cocaine-related memory…
Descriptors: Cocaine, Long Term Memory, Cognitive Processes, Animals
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Meeter, Martijn; Veldkamp, Rob; Jin, Yaochu – Brain and Cognition, 2009
Why does the brain contain more than one memory system? Genetic algorithms can play a role in elucidating this question. Here, model animals were constructed containing a dorsal striatal layer that controlled actions, and a ventral striatal layer that controlled a dopaminergic learning signal. Both layers could gain access to three modeled memory…
Descriptors: Animals, Operant Conditioning, Memory, Cognitive Processes
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Shema, Reul; Hazvi, Shoshi; Sacktor, Todd C.; Dudai, Yadin – Learning & Memory, 2009
We report here that ZIP, a selective inhibitor of the atypical protein kinase C isoform PKM[zeta], abolishes very long-term conditioned taste aversion (CTA) associations in the insular cortex of the behaving rat, at least 3 mo after encoding. The effect of ZIP is not replicated by a general serine/threonine protein kinase inhibitor that is…
Descriptors: Brain, Animals, Conditioning, Perception
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Thompson, Brittany M.; Baratta, Michael V.; Biedenkapp, Joseph C.; Rudy, Jerry W.; Watkins, Linda R.; Maier, Steven F. – Learning & Memory, 2010
Activation of the infralimbic region (IL) of the medial prefrontal cortex (mPFC) reduces conditioned fear in a variety of situations, and the IL is thought to play an important role in the extinction of conditioned fear. Here we report a series of experiments using contextual fear conditioning in which the IL is activated with the GABAa antagonist…
Descriptors: Fear, Brain Hemisphere Functions, Learning Processes, Conditioning
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Stocco, Andrea; Lebiere, Christian; Anderson, John R. – Psychological Review, 2010
The basal ganglia play a central role in cognition and are involved in such general functions as action selection and reinforcement learning. Here, we present a model exploring the hypothesis that the basal ganglia implement a conditional information-routing system. The system directs the transmission of cortical signals between pairs of regions…
Descriptors: Cognitive Processes, Brain Hemisphere Functions, Role, Learning Processes
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Theberge, Florence R. M.; Milton, Amy L.; Belin, David; Lee, Jonathan L. C.; Everitt, Barry J. – Learning & Memory, 2010
A distributed limbic-corticostriatal circuitry is implicated in cue-induced drug craving and relapse. Exposure to drug-paired cues not only precipitates relapse, but also triggers the reactivation and reconsolidation of the cue-drug memory. However, the limbic cortical-striatal circuitry underlying drug memory reconsolidation is unclear. The aim…
Descriptors: Cues, Cocaine, Symptoms (Individual Disorders), Classical Conditioning
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Bradfield, Laura A.; McNally, Gavan P. – Learning & Memory, 2010
We studied the role of nucleus accumbens shell (AcbSh) in Pavlovian fear conditioning. Rats were trained to fear conditioned stimulus A (CSA) in Stage I, which was then presented in compound with a neutral stimulus and paired with shock in Stage II. AcbSh lesions had no effect on fear-learning to CSA in Stage I, but selectively prevented learning…
Descriptors: Stimuli, Classical Conditioning, Fear, Child Development
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Gao, Yu; Raine, Adrian; Venables, Peter H.; Dawson, Michael E.; Mednick, Sarnoff A. – Developmental Science, 2010
Although fear conditioning is an important psychological construct implicated in behavioral and emotional problems, little is known about how it develops in early childhood. Using a differential, partial reinforcement conditioning paradigm, this longitudinal study assessed skin conductance conditioned responses in 200 children at ages 3, 4, 5, 6,…
Descriptors: Emotional Problems, Models, Conditioning, Individual Differences
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Winocur, Gordon; Frankland, Paul W.; Sekeres, Melanie; Fogel, Stuart; Moscovitch, Morris – Learning & Memory, 2009
After acquisition, memories associated with contextual fear conditioning pass through a labile phase, in which they are vulnerable to hippocampal lesions, to a more stable state, via consolidation, in which they engage extrahippocampal structures and are resistant to such disruption. The process is accompanied by changes in the form of the memory…
Descriptors: Conditioning, Memory, Fear, Brain Hemisphere Functions
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Bredy, Timothy W.; Barad, Mark – Learning & Memory, 2009
Mice communicate through visual, vocal, and olfactory cues that influence innate, nonassociative behavior. We here report that exposure to a recently fear-conditioned familiar mouse impairs acquisition of conditioned fear and facilitates fear extinction, effects mimicked by both an olfactory chemosignal emitted by a recently fear-conditioned…
Descriptors: Cues, Cognitive Processes, Fear, Animals
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Hegoburu, Chloe; Sevelinges, Yannick; Thevenet, Marc; Gervais, Remi; Parrot, Sandrine; Mouly, Anne-Marie – Learning & Memory, 2009
Although the amygdala seems to be essential to the formation and storage of fear memories, it might store only some aspects of the aversive event and facilitate the storage of more specific sensory aspects in cortical areas. We addressed the time course of amygdala and cortical activation in the context of odor fear conditioning in rats. Using…
Descriptors: Stimuli, Conditioning, Fear, Language Processing
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Stafford, James M.; Lattal, K. Matthew – Learning & Memory, 2009
An issue of increasing theoretical interest in the study of learning is to compare the processes that follow an initial learning experience (such as learning an association between a context and a shock; memory consolidation processes) with those that follow retrieval of that learning experience (such as exposure to the context in the absence of…
Descriptors: Cognitive Processes, Memory, Learning Experience, Inhibition
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