- computational influence of adult neurogenesis on memory encoding

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computational influence of adult neurogenesis on memory encoding -


Jan 29, 2009 · Adult neurogenesis in the hippocampus leads to the incorporation of thousands of new granule cells into the dentate gyrus every month, but its function remains unclear. Here we present computational evidence that indicates that adult neurogenesis may make three separate but related contributions to memory formation.Cited by: 346. Jan 29, 2009 · Adult neurogenesis in the hippocampus leads to the incorporation of thousands of new granule cells into the dentate gyrus every month, but its function remains unclear. Here, we present computational evidence that indicates that adult neurogenesis may make three separate but related contributions to memory formation.Cited by: 346.

Adult neurogenesis in the hippocampus leads to the incorporation of thousands of new granule cells into the dentate gyrus every month, but its function remains unclear. Here, we present computational evidence that indicates that adult neurogenesis may make three separate but related contributions to memory formation. First, immature neurons introduce a degree of similarity to memories learned Cited by: 346. Neuron Viewpoint Computational Influence of Adult Neurogenesis on Memory Encoding James B. Aimone,1 Janet Wiles,2 and Fred H. Gage1,* 1Laboratory of Genetics, Salk Institute for Biological Studies, La Jolla, CA 92037, USA 2School of Information Technology and Electrical Engineering, University of Queensland, Brisbane, Queensland 4072, Australia.

Request PDF on ResearchGate | Computational Influence of Adult Neurogenesis on Memory Encoding | Adult neurogenesis in the hippocampus leads to the incorporation of thousands of new granule cells. classic hippocampal memory tasks, combined with the observa- Computational Modeling of Adult Neurogenesis 188 Neuron 61, 187Ð202, January 29, 2009» 2009 Elsevier Inc. immature neurons, and these, as well as all later newborn Computational Influence of Adult Neurogenesis on Memory Encoding.