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Knierim, James J. – Learning & Memory, 2006
Place cells of the rat hippocampus are a dominant model system for understanding the role of the hippocampus in learning and memory at the level of single-unit and neural ensemble responses. A complete understanding of the information processing and computations performed by the hippocampus requires detailed knowledge about the properties of the…
Descriptors: Knowledge Representation, Brain Hemisphere Functions, Cytology, Molecular Biology
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Okado, Yoko; Stark, Craig E. L. – Learning & Memory, 2005
False memories are often demonstrated using the misinformation paradigm, in which a person's recollection of a witnessed event is altered after exposure to misinformation about the event. The neural basis of this phenomenon, however, remains unknown. The authors used fMRI to investigate encoding processes during the viewing of an event and…
Descriptors: Neurolinguistics, Memory, Coding, Knowledge Representation
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Straub, Volko A.; Styles, Benjamin J.; Ireland, Julie S.; O'Shea, Michael; Benjamin, Paul R. – Learning & Memory, 2004
Learning to associate a conditioned (CS) and unconditioned stimulus (US) results in changes in the processing of CS information. Here, we address directly the question whether chemical appetitive conditioning of "Lymnaea" feeding behavior involves changes in the peripheral and/or central processing of the CS by using extracellular recording…
Descriptors: Conditioning, Neurology, Neurolinguistics, Neuropsychology
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Bristol, Adam S.; Carew, Thomas J. – Learning & Memory, 2005
Many studies of the neural mechanisms of learning have focused on habituation, a simple form of learning in which a response decrements with repeated stimulation. In the siphon-elicited siphon withdrawal reflex (S-SWR) of the marine mollusk "Aplysia," the prevailing view is that homosynaptic depression of primary sensory afferents underlies…
Descriptors: Stimulation, Inhibition, Habituation, Depression (Psychology)