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Winslow, James T.; Noble, Pamela L.; Davis, Michael – Learning & Memory, 2008
Individuals with anxiety disorders often do not respond to safety signals and hence continue to be afraid and anxious. Consequently, it is important to develop paradigms in animals that can directly study brain systems involved in learning about, and responding to, safety signals. We previously developed a discrimination procedure in rats of the…
Descriptors: Cues, Models, Safety, Discrimination Learning
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Cui, Wen; Smith, Andrew; Darby-King, Andrea; Harley, Carolyn W.; McLean, John H. – Learning & Memory, 2007
Increases in cyclic adenosine monophosphate (cAMP) are proposed to initiate learning in a wide variety of species. Here, we measure changes in cAMP in the olfactory bulb prior to, during, and following a classically conditioned odor preference trial in rat pups. Measurements were taken up to the point of maximal CREB phosphorylation in olfactory…
Descriptors: Classical Conditioning, Nonverbal Learning, Animals, Discrimination Learning
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Broadbent, Nicola J.; Squire, Larry R.; Clark, Robert E. – Learning & Memory, 2007
We explored the circumstances in which rats engage either declarative memory (and the hippocampus) or habit memory (and the dorsal striatum). Rats with damage to the hippocampus or dorsal striatum were given three different two-choice discrimination tasks (odor, object, and pattern). These tasks differed in the number of trials required for…
Descriptors: Memory, Discrimination Learning, Animals, Retention (Psychology)
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Gill, Timothy V.; Rumbaugh, Duane M. – American Journal of Mental Deficiency, 1974
Descriptors: Animal Behavior, Discrimination Learning, Intelligence, Learning Processes
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Gibson, Brett M.; Wasserman, Edward A.; Cook, Robert G. – Learning and Motivation, 2006
In Experiment 1, we trained four pigeons to concurrently discriminate displays of 16 same icons (16S) from displays of 16 different icons (16D) as well as between displays of same icons (16S) from displays that contained 15 same icons and one different icon (15S:1D). The birds rapidly learned to discriminate 16S vs. 16D displays, but they failed…
Descriptors: Visual Discrimination, Animal Behavior, Visual Learning, Learning Processes
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White, Norman M.; Gaskin, Stephane – Learning & Memory, 2006
Learning to discriminate between spatial locations defined by two adjacent arms of a radial maze in the conditioned cue preference paradigm requires two kinds of information: latent spatial learning when the rats explore the maze with no food available, and learning about food availability in two spatial locations when the rats are then confined…
Descriptors: Stimuli, Memory, Discrimination Learning, Spatial Ability
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Domjan, Michael; Gillan, Douglas J. – Journal of Experimental Psychology: Animal Behavior Processes, 1977
To complement investigations of the direct effects of lithium toxicosis on consummatory behavior, these experiments were designed to determine the aftereffects on drinking of exposure to a conditioned stimulus previously paired with lithium. (Author/RK)
Descriptors: Animal Behavior, Conditioning, Discrimination Learning, Experimental Psychology
Corballis, M. C.; Beale, I. L. – Psychol Rev, 1970
Descriptors: Adults, Animal Behavior, Behavioral Science Research, Children