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Bedecarrats, Alexis; Cornet, Charles; Simmers, John; Nargeot, Romuald – Learning & Memory, 2013
Feeding in "Aplysia" provides an amenable model system for analyzing the neuronal substrates of motivated behavior and its adaptability by associative reward learning and neuromodulation. Among such learning processes, appetitive operant conditioning that leads to a compulsive-like expression of feeding actions is known to be associated…
Descriptors: Animals, Animal Behavior, Eating Habits, Associative Learning
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Pinkston, Jonathan W.; Lamb, R. J. – Journal of the Experimental Analysis of Behavior, 2012
When given to pigeons, the direct-acting dopamine agonist apomorphine elicits pecking. The response has been likened to foraging pecking because it bears remarkable similarity to foraging behavior, and it is enhanced by food deprivation. On the other hand, other data suggest the response is not related to foraging behavior and may even interfere…
Descriptors: Animals, Brain, Biochemistry, Experiments
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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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Lombas, Andres S.; Kearns, David N.; Weiss, Stanley J. – Learning and Motivation, 2008
The present experiment compared the effects of a food-based conditioned inhibitor on food seeking vs. cocaine seeking behavior. In two groups of rats, the A+/AB- Pavlovian conditioned inhibition procedure was used to create a conditioned inhibitor for food. Then, for one group of rats (Food-Food Group), a click stimulus was established as an…
Descriptors: Behavior Modification, Cocaine, Classical Conditioning, Animals
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Lex, Anja; Hauber, Wolfgang – Learning & Memory, 2008
Pavlovian stimuli previously paired with food can markedly elevate the rate of food-reinforced instrumental responding. This effect, termed Pavlovian-instrumental transfer (PIT), depends both on general activating and specific cueing properties of Pavlovian stimuli. Recent evidence suggests that the general activating properties of Pavlovian…
Descriptors: Stimuli, Classical Conditioning, Reinforcement, Food
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Burgos, Jose E. – Journal of the Experimental Analysis of Behavior, 2007
This article presents an interpretation of autoshaping, and positive and negative automaintenance, based on a neural-network model. The model makes no distinction between operant and respondent learning mechanisms, and takes into account knowledge of hippocampal and dopaminergic systems. Four simulations were run, each one using an "A-B-A" design…
Descriptors: Brain, Models, Neurological Organization, Simulation
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Kehoe, E. James; White, Natasha E. – Learning & Memory, 2004
Rabbits were given reinforced training of the nictitating membrane (NM) response using separate conditioned stimuli (CSs), which were a tone, light, and/or tactile vibration. Then, two CSs were compounded and given further pairings with the unconditioned stimulus (US). Evidence of both overexpectation and summation effects appeared. That is,…
Descriptors: Animals, Reinforcement, Training, Brain
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Lipp, Hans-Peter; Kaczmarek, Leszek; Werka, Tomasz; Knapska, Ewelina; Walasek, Grazyna; Nikolaev, Evgeni; Neuhausser-Wespy, Frieder – Learning & Memory, 2006
Understanding the function of the distinct amygdaloid nuclei in learning comprises a major challenge. In the two studies described herein, we used c-Fos immunolabeling to compare the engagement of various nuclei of the amygdala in appetitive and aversive instrumental training procedures. In the first experiment, rats that had already acquired a…
Descriptors: Conditioning, Acoustics, Laboratory Equipment, Neurological Organization