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pubmed-article:8476977pubmed:abstractTextNonassociative learning is an important property of neural organization in both vertebrate and invertebrate species. In this paper we propose a neural model for nonassociative learning in a well studied prototypical sensory-motor scheme: the landing reaction of flies. The general structure of the model consists of sensory processing stages, a sensory-motor gate network, and motor control circuits. The paper concentrates on the sensory-motor gate network which has an agonist-antagonist structure. Sensory inputs to this circuit are transduced by chemical messenger systems whose dynamics include depletion and replenishment terms. The resulting circuit is a gated dipole anatomy and we show that it gives a good account of nonassociative learning in the landing reaction of the fly.lld:pubmed
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pubmed-article:8476977pubmed:statusMEDLINElld:pubmed
pubmed-article:8476977pubmed:issn0340-1200lld:pubmed
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pubmed-article:8476977pubmed:volume68lld:pubmed
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pubmed-article:8476977pubmed:pagination351-61lld:pubmed
pubmed-article:8476977pubmed:dateRevised2006-11-15lld:pubmed
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pubmed-article:8476977pubmed:year1993lld:pubmed
pubmed-article:8476977pubmed:articleTitleA neural model for nonassociative learning in a prototypical sensory-motor scheme: the landing reaction in flies.lld:pubmed
pubmed-article:8476977pubmed:affiliationDepartment of Electrical Engineering, University of Houston, TX 77204-4793.lld:pubmed
pubmed-article:8476977pubmed:publicationTypeJournal Articlelld:pubmed
pubmed-article:8476977pubmed:publicationTypeComparative Studylld:pubmed
pubmed-article:8476977pubmed:publicationTypeResearch Support, U.S. Gov't, P.H.S.lld:pubmed