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Larrauri, Jose A.; Schmajuk, Nestor A. – Psychological Review, 2008
The participation of attentional and associative mechanisms in extinction, spontaneous recovery, external disinhibition, renewal, reinstatement, and reacquisition was evaluated through computer simulations with an extant computational model of classical conditioning (N. A. Schmajuk, Y. Lam, & J. A. Gray, 1996; N. A. Schmajuk & J. A. Larrauri,…
Descriptors: Cues, Classical Conditioning, Associative Learning, Computer Simulation

Holyoak, Keith J.; And Others – Psychological Review, 1989
A theory of classical conditioning is presented, which is based on a parallel, rule-based performance system integrated with mechanisms for inductive learning. A major inferential heuristic incorporated into the theory involves "unusualness," which is focused on novel cues. The theory is implemented via computer simulation. (TJH)
Descriptors: Classical Conditioning, Computer Simulation, Heuristics, Induction

Schmajuk, Nestor A.; DiCarlo, James J. – Psychological Review, 1991
The participation of the hippocampus in classical conditioning is described in terms of a multilayer network portraying stimulus configuration. A model of hippocampal function is presented, and computer simulations are used to study neural activity in the various brain areas mapped according to the model. (SLD)
Descriptors: Behavior Patterns, Classical Conditioning, Computer Simulation, Mathematical Models

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