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Pavesi, Eloisa; Gooch, Allison; Lee, Elizabeth; Fletcher, Max L. – Learning & Memory, 2013
We investigated the role of cholinergic neurotransmission in olfactory fear learning. Mice receiving pairings of odor and foot shock displayed fear to the trained odor the following day. Pretraining injections of the nicotinic antagonist mecamylamine had no effect on subsequent freezing, while the muscarinic antagonist scopolamine significantly…
Descriptors: Olfactory Perception, Fear, Conditioning, Animals
Peer reviewedKilmer, W. L.; Arbib, M. A. – International Journal of Man-Machine Studies, 1973
A discussion of several types of formal neurons, many of whose functions are modifiable by their own input stimuli. The language of finite automata is used to mathematicize the problem of adaptation sufficiently to remove some ambiguities of Brindley's approach. (Author)
Descriptors: Automation, Human Development, Learning Processes, Neurological Organization
Peer reviewedEvans, P. L. C.; Hogg, J. H. – Journal of Experimental Child Psychology, 1975
This study relates excitatory and inhibitory personality variables of a heterogeneous group of severely retarded children to performance on a discrete trial, successive go-no-go intradimensional discrimination learning problem, which was followed by stimulus generalization tests on a color hue continuum and extinction trials. (GO)
Descriptors: Color, Discrimination Learning, Handicapped Children, Individual Differences
Peer reviewedByrne, John H. – News in Physiological Sciences, 1986
Projects that soon a complete mechanistic understanding of simple forms of learning will be available. Describes some of the recent advances in neuroscience and psychology in understanding the changes in neural circuits that occur during certain behavioral situations. Suggests that learning involves the activation of second messenger systems. (TW)
Descriptors: Cognitive Processes, Conditioning, Encoding (Psychology), Learning Theories
Peer reviewedThompson, Rihard F. – Science, 1986
Describes recent research findings in the area of neurobiology and its relationship to learning and memory. The article provides definitions of associative and nonassociative learning, identifies essential memory trace circuits of the mammalian brain, and discusses some neural mechanisms of learning. (TW)
Descriptors: Animal Behavior, Artificial Intelligence, Behavior, Cardiovascular System

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