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Bergstrom, Hadley C.; Lieberman, Abby G.; Graybeal, Carolyn; Lipkin, Anna M.; Holmes, Andrew – Learning & Memory, 2020
Most experimental preparations demonstrate a role for dorsolateral striatum (DLS) in stimulus-response, but not outcome-based, learning. Here, we assessed DLS involvement in a touchscreen-based reversal task requiring mice to update choice following a change in stimulus-reward contingencies. In vivo single-unit recordings in the DLS showed…
Descriptors: Brain Hemisphere Functions, Stimuli, Responses, Learning Processes
Barker, Jacqueline M.; Bryant, Kathleen G.; Chandler, L. Judson – Learning & Memory, 2019
The loss of behavioral flexibility is common across a number of neuropsychiatric illnesses. This may be in part due to the loss of the ability to detect or use changes in action-outcome contingencies to guide behavior. There is growing evidence that the ventral hippocampus plays a critical role in the regulation of flexible behavior and…
Descriptors: Brain, Rewards, Behavior Patterns, Cognitive Processes
Smedley, Elizabeth B.; Smith, Kyle S. – Learning & Memory, 2018
Sign-tracking is a form of autoshaping where animals develop conditioned responding directed toward stimuli predictive of an outcome even though the outcome is not contingent on the animal's behavior. Sign-tracking behaviors are thought to arise out of the attribution of incentive salience (i.e., motivational value) to reward-predictive cues. It…
Descriptors: Cues, Rewards, Persistence, Responses
Marshall, Andrew T.; Ostlund, Sean B. – Learning & Memory, 2018
Drug-paired cues acquire powerful motivational properties, but only lead to active drug-seeking behavior if they are potent enough to overwhelm the cognitive control processes that serve to suppress such urges. Studies using the Pavlovian-to-instrumental transfer (PIT) task have shown that rats pretreated with cocaine or amphetamine exhibit…
Descriptors: Cues, Drug Use, Animals, Delay of Gratification
Vousden, George H.; Paulcan, Sloane; Robbins, Trevor W.; Eagle, Dawn M.; Milton, Amy L. – Learning & Memory, 2020
In obsessive-compulsive disorder (OCD), functional behaviors such as checking that a door is locked become dysfunctional, maladaptive, and debilitating. However, it is currently unknown how aversive and appetitive motivations interact to produce functional and dysfunctional behavior in OCD. Here we show a double dissociation in the effects of…
Descriptors: Animal Behavior, Cues, Task Analysis, Punishment
Derman, Rifka C.; Schneider, Kevin; Juarez, Shaina; Delamater, Andrew R. – Learning & Memory, 2018
When discrete localizable stimuli are used during appetitive Pavlovian conditioning, "sign-tracking" and "goal-tracking" responses emerge. Sign-tracking is observed when conditioned responding is directed toward the CS, whereas goal-tracking manifests as responding directed to the site of expected reward delivery. These…
Descriptors: Conditioning, Responses, Stimuli, Rewards
Dit-Bressel, Philip Jean-Richard; McNally, Gavan P. – Learning & Memory, 2015
Aversive stimuli not only support fear conditioning to their environmental antecedents, they also punish behaviors that cause their occurrence. The amygdala, especially the basolateral nucleus (BLA), has been critically implicated in Pavlovian fear learning but its role in punishment remains poorly understood. Here, we used a within-subjects…
Descriptors: Role, Brain Hemisphere Functions, Punishment, Rewards
Baker, Phillip M.; Ragozzino, Michael E. – Learning & Memory, 2014
Switches in reward outcomes or reward-predictive cues are two fundamental ways in which information is used to flexibly shift response patterns. The rat prelimbic cortex and dorsomedial striatum support behavioral flexibility based on a change in outcomes. The present experiments investigated whether these two brain regions are necessary for…
Descriptors: Brain, Animals, Cues, Rewards
Stamm, Andrew W.; Nguyen, Nam D.; Seicol, Benjamin J.; Fagan, Abigail; Oh, Angela; Drumm, Michael; Lundt, Maureen; Stickgold, Robert; Wamsley, Erin J. – Learning & Memory, 2014
Post-learning sleep is beneficial for human memory. However, it may be that not all memories benefit equally from sleep. Here, we manipulated a spatial learning task using monetary reward and performance feedback, asking whether enhancing the salience of the task would augment overnight memory consolidation and alter its incorporation into…
Descriptors: Sleep, Memory, Learning Processes, Spatial Ability
Meyer, Heidi C.; Bucci, David J. – Learning & Memory, 2014
Previous studies have examined the maturation of learning and memory abilities during early stages of development. By comparison, much less is known about the ontogeny of learning and memory during later stages of development, including adolescence. In Experiment 1, we tested the ability of adolescent and adult rats to learn a Pavlovian negative…
Descriptors: Inhibition, Memory, Animals, Adolescents
Beckmann, Joshua S.; Chow, Jonathan J. – Learning & Memory, 2015
Sign- and goal-tracking are differentially associated with drug abuse-related behavior. Recently, it has been hypothesized that sign- and goal-tracking behavior are mediated by different neurobehavioral valuation systems, including differential incentive salience attribution. Herein, we used different conditioned stimuli to preferentially elicit…
Descriptors: Incentives, Rewards, Correlation, Drug Abuse
Aquili, Luca; Liu, Andrew W.; Shindou, Mayumi; Shindou, Tomomi; Wickens, Jeffery R. – Learning & Memory, 2014
Behavioral flexibility is vital for survival in an environment of changing contingencies. The nucleus accumbens may play an important role in behavioral flexibility, representing learned stimulus-reward associations in neural activity during response selection and learning from results. To investigate the role of nucleus accumbens neural activity…
Descriptors: Behavior Patterns, Change, Brain Hemisphere Functions, Stimuli
Singh, Teghpal; McDannald, Michael A.; Takahashi, Yuji K.; Haney, Richard Z.; Cooch, Nisha K.; Lucantonio, Federica; Schoenbaum, Geoffrey – Learning & Memory, 2011
While knowing what to expect is important, it is equally important to know when to expect it and to respond accordingly. This is apparent even in simple Pavlovian training situations in which animals learn to respond more strongly closer to reward delivery. Here we report that the nucleus accumbens core, an area well-positioned to represent…
Descriptors: Rewards, Classical Conditioning, Behavior Modification, Operant Conditioning
Mattfeld, Aaron T.; Gluck, Mark A.; Stark, Craig E. L. – Learning & Memory, 2011
The goal of the present study was to elucidate the role of the human striatum in learning via reward and punishment during an associative learning task. Previous studies have identified the striatum as a critical component in the neural circuitry of reward-related learning. It remains unclear, however, under what task conditions, and to what…
Descriptors: Feedback (Response), Associative Learning, Specialization, Rewards
Tort, Adriano B. L.; Komorowski, Robert; Kopell, Nancy; Eichenbaum, Howard – Learning & Memory, 2011
The association of specific events with the context in which they occur is a fundamental feature of episodic memory. However, the underlying network mechanisms generating what-where associations are poorly understood. Recently we reported that some hippocampal principal neurons develop representations of specific events occurring in particular…
Descriptors: Animals, Brain Hemisphere Functions, Context Effect, Correlation
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