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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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Crow, Terry – Learning & Memory, 2004
The less-complex central nervous system of many invertebrates make them attractive for not only the molecular analysis of the associative learning and memory, but also in determining how neural circuits are modified by learning to generate changes in behavior. The nudibranch mollusk "Hermissenda crassicornis" is a preparation that has contributed…
Descriptors: Stimuli, Identification, Classical Conditioning, Anatomy
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McNally, Gavan P.; Westbrook, R. Frederick – Learning & Memory, 2006
The ability to detect and learn about the predictive relations existing between events in the world is essential for adaptive behavior. It allows us to use past events to predict the future and to adjust our behavior accordingly. Pavlovian fear conditioning allows anticipation of sources of danger in the environment. It guides attention away from…
Descriptors: Fear, Anxiety, Animals, Nonverbal Learning
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Kehoe, E. James – Psychological Review, 1988
A detailed description of a layered network model is provided, with computer simulations of key associative learning phenomena and predictions generated from the model. The model is compared to more conventional theories of learning to learn and configural learning. (SLD)
Descriptors: Associative Learning, Classical Conditioning, Cognitive Processes, Cognitive Psychology