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Mancini, Nino; Hranova, Sia; Weber, Julia; Weiglein, Alice; Schleyer, Michael; Weber, Denise; Thum, Andreas S.; Gerber, Bertram – Learning & Memory, 2019
Adjusting behavior to changed environmental contingencies is critical for survival, and reversal learning provides an experimental handle on such cognitive flexibility. Here, we investigate reversal learning in larval "Drosophila." Using odor-taste associations, we establish olfactory reversal learning in the appetitive and the aversive…
Descriptors: Learning Processes, Olfactory Perception, Rewards, Punishment
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Piantadosi, Patrick T.; Yeates, Dylan C. M.; Floresco, Stan B. – Learning & Memory, 2020
Fear can potently inhibit ongoing behavior, including reward-seeking, yet the neural circuits that underlie such suppression remain to be clarified. Prior studies have demonstrated that distinct subregions of the rodent medial prefrontal cortex (mPFC) differentially affect fear behavior, whereby fear expression is promoted by the more dorsal…
Descriptors: Learning Processes, Brain Hemisphere Functions, Fear, Conditioning
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Kennedy, Bruce C.; Kohli, Maulika; Maertens, Jamie J.; Marell, Paulina S.; Gewirtz, Jonathan C. – Learning & Memory, 2016
Pavlovian conditioned approach behavior can be directed as much toward discrete cues as it is toward the environmental contexts in which those cues are encountered. The current experiments characterized a tendency of rats to approach object cues whose prior exposure had been paired with reward (conditioned object preference, COP). To demonstrate…
Descriptors: Conditioning, Cues, Animals, Cocaine
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Leganes-Fonteneau, Mateo; Nikolaou, Kyriaki; Scott, Ryan; Duka, Theodora – Learning & Memory, 2019
Stimuli conditioned with a substance can generate drug-approach behaviors due to their acquired motivational properties. According to implicit theories of addiction, these stimuli can decrease cognitive control automatically. The present study (n = 49) examined whether reward-associated stimuli can interfere with cognitive processes in the absence…
Descriptors: Knowledge Level, Rewards, Conditioning, Bayesian Statistics
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Eisenhardt, Dorothea – Learning & Memory, 2014
The honeybee ("Apis mellifera") has long served as an invertebrate model organism for reward learning and memory research. Its capacity for learning and memory formation is rooted in the ecological need to efficiently collect nectar and pollen during summer to ensure survival of the hive during winter. Foraging bees learn to associate a…
Descriptors: Entomology, Rewards, Memory, Learning Processes
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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
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Winterbauer, Neil E.; Bouton, Mark E. – Learning and Motivation, 2011
Three experiments with rat subjects examined resurgence of an extinguished instrumental response using the procedure introduced by Epstein (1983) with pigeons. There were three phases: (1) initial acquisition of pressing on a lever (L1) for pellet reward, (2) extinction of L1, and (3) a test session in which a second lever (L2) was inserted,…
Descriptors: Rewards, Experimental Psychology, Animals, Laboratory Experiments
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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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Martig, Adria K.; Mizumori, Sheri J. Y. – Learning & Memory, 2011
The ventral tegmental area (VTA) and substantia nigra pars compacta (SNc) may provide modulatory signals that, respectively, influence hippocampal (HPC)- and striatal-dependent memory. Electrophysiological studies investigating neural correlates of learning and memory of dopamine (DA) neurons during classical conditioning tasks have found DA…
Descriptors: Classical Conditioning, Memory, Brain, Rewards
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Roitman, Mitchell F.; Wheeler, Robert A.; Tiesinga, Paul H. E.; Roitman, Jamie D.; Carelli, Regina M. – Learning & Memory, 2010
The nucleus accumbens (NAc) plays a role in hedonic reactivity to taste stimuli. Learning can alter the hedonic valence of a given stimulus, and it remains unclear how the NAc encodes this shift. The present study examined whether the population response of NAc neurons to a taste stimulus is plastic using a conditioned taste aversion (CTA)…
Descriptors: Conditioning, Rewards, Brain Hemisphere Functions, Role
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Krachun, Carla; Carpenter, Malinda; Call, Josep; Tomasello, Michael – Developmental Science, 2009
A nonverbal false belief task was administered to children (mean age 5 years) and two great ape species: chimpanzees ("Pan troglodytes") and bonobos ("Pan paniscus"). Because apes typically perform poorly in cooperative contexts, our task was competitive. Two versions were run: in both, a human competitor witnessed an experimenter hide a reward in…
Descriptors: Preschool Children, Rewards, Primatology, Animals
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Capaldi, E. J.; Martins, Ana P. G.; Altman, Meaghan – Learning and Motivation, 2009
arrow]US associations also survived The memories of the unconditioned stimulus (US) and its absence (No US), symbolized as S[superscript R] and S[superscript N], respectively, may be retrieved on US or No US trials giving rise to four types of associations, S[superscript R][right arrow]US, S[superscript R][right arrow]No US, S[superscript N][right…
Descriptors: Classical Conditioning, Animal Behavior, Rewards, Experimental Psychology
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Clarke, Alex M.; And Others – Journal of Experimental Child Psychology, 1974
The effects on instrumental behavior of differences in type of task, type of reward and three organismic variables (history of social reinforcement from peers, extraversion, and intelligence) were investigated in preschool children. (ST)
Descriptors: Imitation, Intelligence, Learning Processes, Operant Conditioning
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Sandoz, Jean-Christophe; Pham-Delegue, Minh-Ha – Learning & Memory, 2004
In honeybees, the proboscis extension response (PER) can be conditioned by associating an odor stimulus (CS) to a sucrose reward (US). Conditioned responses to the CS, which are acquired by most bees after a single CS-US pairing, disappear after repeated unrewarded presentations of the CS, a process called extinction. Extinction is usually thought…
Descriptors: Intervals, Conditioning, Epidemiology, Responses
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Schlund, Michael W.; Cataldo, Michael F. – Journal of the Experimental Analysis of Behavior, 2005
Results of numerous human imaging studies and nonhuman neurophysiological studies on "reward" highlight a role for frontal, striatal, and thalamic regions in operant learning. By integrating operant and functional neuroimaging methodologies, the present investigation examined brain activation to two types of discriminative stimuli correlated with…
Descriptors: Brain Hemisphere Functions, Diagnostic Tests, Correlation, Role