Memory formation by refinement of neural representations: the inhibition hypothesis.
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Summary
It is suggested that during memory formation, the hippocampus renders neural representations more sparse by providing an inhibitory signal to the neocortex.
- Type
- review
- Published
- 2008-05-16
- Cited by
- 22
- References
- 89
- OpenAlex
- https://openalex.org/W1999175689
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:15959680
Keywords
Hippocampus, Neocortex, Neuroscience, Psychology, Hippocampal formation
References
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- Persistence of Parahippocampal Representation in the Absence of Stimulus Input Enhances Long-Term Encoding: A Functional Magnetic Resonance Imaging Study of Subsequent Memory after a Delayed Match-to-Sample Task
Cited by
- Hippocampal control of repetition effects for associative stimuli
- Gedächtnisleistung und Schizophrenie in Assoziation mit einem Polymorphismus des Neuropeptid Y-Gens
- Gamma power reductions accompany stimulus-specific representations of dynamic events.
- Interactions between Medial Temporal Lobe, Prefrontal Cortex, and Inferior Temporal Regions during Visual Working Memory: A Combined Intracranial EEG and Functional Magnetic Resonance Imaging Study
- Memory processes during sleep: beyond the standard consolidation theory
- Electrophysiological signature of working and long‐term memory interaction in the human hippocampus
- Stimulus-evoked high frequency oscillations are present in neuronal networks on microelectrode arrays
- The specific contribution of neuroimaging versus neurophysiological data to understanding cognition.
- Neural Dynamics Associated with Semantic and Episodic Memory for Faces: Evidence from Multiple Frequency Bands
- Do surface DC-shifts affect epileptic hippocampal EEG activity?
- Intracranial electroencephalography power and phase synchronization changes during monaural and binaural beat stimulation
- On the self-organization of a hierarchical memory for compositional object representation in the visual cortex
- Impaired Functional Connectivity in the Prefrontal Cortex: A Mechanism for Chronic Stress-Induced Neuropsychiatric Disorders
- An interplay of fusiform gyrus and hippocampus enables prototype- and exemplar-based category learning.
- Hippocampal pattern completion is linked to gamma power increases and alpha power decreases during recollection
- Hippocampus duality: Memory and novelty detection are subserved by distinct mechanisms
- Hippocampal theta phases organize the reactivation of large-scale electrophysiological representations during goal-directed navigation
- Cognitive and neural mechanisms of episodic memory reactivation: from consolidation to retrieval
- The memory trace of a stressful episode.
- Representational formats of human memory traces
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