Detection of an inhibitory cortical gradient underlying peak shift in learning: a neural basis for a false memory

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Detection of an inhibitory cortical gradient underlying peak shift in learning: a neural basis for a false memory is …
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scholarly articleQ13442814

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P356DOI10.1016/J.NLM.2012.10.001
P932PMC publication ID3538826
P698PubMed publication ID23063933

P2093author name stringAlexandre A Miasnikov
Norman M Weinberger
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AUDITORY POTENTIALS DURING ACOUSTIC HABITUATION: COCHLEAR NUCLEUS, CEREBELLUM AND AUDITORY CORTEX.Q51266049
Discrimination and generalization along a simple dimension: peak shift and rule-governed responding.Q51924227
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P433issue4
P921main subjectfalse memoryQ2051704
P304page(s)368-379
P577publication date2012-10-11
P1433published inNeurobiology of Learning and MemoryQ15764599
P1476titleDetection of an inhibitory cortical gradient underlying peak shift in learning: a neural basis for a false memory
P478volume98

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cites work (P2860)
Q30432035Gamma band plasticity in sensory cortex is a signature of the strongest memory rather than memory of the training stimulus
Q30368862Learning strategy refinement reverses early sensory cortical map expansion but not behavior: Support for a theory of directed cortical substrates of learning and memory.
Q50148100Persistent, generalized hypersensitivity of olfactory bulb interneurons after olfactory fear generalization
Q38965344Predicting favorable and unfavorable consequences of perceptual learning: worsening and the peak shift
Q30432234Remodeling sensory cortical maps implants specific behavioral memory
Q30404892Resting state functional connectivity of the basal nucleus of Meynert in humans: in comparison to the ventral striatum and the effects of age

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