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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
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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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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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Hussaini, Syed Abid; Komischke, Bernhard; Menzel, Randolf; Lachnit, Harald – Learning & Memory, 2007
Second-order conditioning (SOC) is the association of a neutral stimulus with another stimulus that had previously been combined with an unconditioned stimulus (US). We used classical conditioning of the proboscis extension response (PER) in honeybees ("Apis mellifera") with odors (CS) and sugar (US). Previous SOC experiments in bees were…
Descriptors: Classical Conditioning, Entomology, Stimuli, Food
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Diegelmann, Soeren; Zars, Melissa; Zars, Troy – Learning & Memory, 2006
Memories can have different strengths, largely dependent on the intensity of reinforcers encountered. The relationship between reinforcement and memory strength is evident in asymptotic memory curves, with the level of the asymptote related to the intensity of the reinforcer. Although this is likely a fundamental property of memory formation,…
Descriptors: Reinforcement, Models, Memory, Memorization
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Brembs, Bjorn; Baxter, Douglas A.; Byrne, John H. – Learning & Memory, 2004
Operant and classical conditioning are major processes shaping behavioral responses in all animals. Although the understanding of the mechanisms of classical conditioning has expanded significantly, the understanding of the mechanisms of operant conditioning is more limited. Recent developments in "Aplysia" are helping to narrow the gap in the…
Descriptors: Operant Conditioning, Classical Conditioning, Responses, Animals
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Baxter, Douglas A.; Byrne, John H. – Learning & Memory, 2006
Feeding behavior of Aplysia provides an excellent model system for analyzing and comparing mechanisms underlying appetitive classical conditioning and reward operant conditioning. Behavioral protocols have been developed for both forms of associative learning, both of which increase the occurrence of biting following training. Because the neural…
Descriptors: Comparative Analysis, Operant Conditioning, Classical Conditioning, Associative Learning
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Bouton, Mark E. – Learning & Memory, 2004
This article provides a selective review and integration of the behavioral literature on Pavlovian extinction. The first part reviews evidence that extinction does not destroy the original learning, but instead generates new learning that is especially context-dependent. The second part examines insights provided by research on several related…
Descriptors: Reinforcement, Expectation, Inhibition, Generalization
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Reyes, Fredy D.; Mozzachiodi, Riccardo; Baxter, Douglas A.; Byrne, John H. – Learning & Memory, 2005
In a recently developed in vitro analog of appetitive classical conditioning of feeding in "Aplysia," the unconditioned stimulus (US) was electrical stimulation of the esophageal nerve (En). This nerve is rich in dopamine (DA)-containing processes, which suggests that DA mediates reinforcement during appetitive conditioning. To test this…
Descriptors: Reinforcement, Logical Thinking, Operant Conditioning, Classical Conditioning
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Jami, Shekib; Barad, Mark; Cain, Christopher K.; Godsil, Bill P. – Learning & Memory, 2005
We recently reported that fear extinction, a form of inhibitory learning, is selectively blocked by systemic administration of L-type voltage-gated calcium channel (LVGCC) antagonists, including nifedipine, in mice. We here replicate this finding and examine three reduced contingency effects after vehicle or nifedipine (40 mg/kg) administration.…
Descriptors: Inhibition, Animals, Contingency Management, Behavior Modification