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Cole, Sindy; Powell, Daniel J.; Petrovich, Gorica D. – Learning & Memory, 2013
The amygdala is important for reward-associated learning, but how distinct cell groups within this heterogeneous structure are recruited during appetitive learning is unclear. Here we used Fos induction to map the functional amygdalar circuitry recruited during early and late training sessions of Pavlovian appetitive conditioning. We found that a…
Descriptors: Associative Learning, Brain, Neurological Organization, Conditioning
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Chung, Ain; Barot, Sabiha K.; Kim, Jeansok J.; Bernstein, Ilene L. – Learning & Memory, 2011
Modern views on learning and memory accept the notion of biological constraints--that the formation of association is not uniform across all stimuli. Yet cellular evidence of the encoding of selective associations is lacking. Here, conditioned stimuli (CSs) and unconditioned stimuli (USs) commonly employed in two basic associative learning…
Descriptors: Associative Learning, Stimuli, Conditioning, Biochemistry
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Mota, Theo; Giurfa, Martin; Sandoz, Jean-Christophe – Learning & Memory, 2011
A sophisticated form of nonelemental learning is provided by occasion setting. In this paradigm, animals learn to disambiguate an uncertain conditioned stimulus using alternative stimuli that do not enter into direct association with the unconditioned stimulus. For instance, animals may learn to discriminate odor rewarded from odor nonrewarded…
Descriptors: Animals, Stimuli, Entomology, Color
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Tabone, Christopher J.; de Belle, J. Steven – Learning & Memory, 2011
Associative conditioning in "Drosophila melanogaster" has been well documented for several decades. However, most studies report only simple associations of conditioned stimuli (CS, e.g., odor) with unconditioned stimuli (US, e.g., electric shock) to measure learning or establish memory. Here we describe a straightforward second-order conditioning…
Descriptors: Stimuli, Conditioning, Associative Learning, Memory