Odor Cues During Slow-Wave Sleep Prompt Declarative Memory Consolidation
Обонятельные сигналы во время медленноволнового сна способствуют консолидации декларативной памяти
2007-03-08
SCID: 54.1/8v7gdrk7
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declarative memory consolidationfunctional MRIhippocampal reactivationodor cueingslow-wave sleep
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Abstract (AI)
Sleep facilitates memory consolidation. A widely held model assumes that this is because newly encoded memories undergo covert reactivation during sleep. We cued new memories in humans during sleep by presenting an odor that had been presented as context during prior learning, and so showed that reactivation indeed causes memory consolidation during sleep. Re-exposure to the odor during slow-wave sleep (SWS) improved the retention of hippocampus-dependent declarative memories but not of hippocampus-independent procedural memories. Odor re-exposure was ineffective during rapid eye movement sleep or wakefulness or when the odor had been omitted during prior learning. Concurring with these findings, functional magnetic resonance imaging revealed significant hippocampal activation in response to odor re-exposure during SWS.
Key Findings
1
Functional MRI showed significant hippocampal activation when learning-associated odors were re-exposed during slow-wave sleep.
2
Memory enhancement required prior pairing of the odor with learning and did not occur during REM sleep or wakefulness.
3
Odor cues during slow-wave sleep did not improve hippocampus-independent procedural memory retention.
4
Re-exposing humans to learning-associated odors during slow-wave sleep improved retention of hippocampus-dependent declarative memories.
5
The findings support covert memory reactivation during sleep as a mechanism underlying declarative memory consolidation.
Research Object
Human declarative and procedural memories formed with odor-context cues during prior learning
Research Subject
The effects of odor re-exposure during slow-wave sleep on memory consolidation and hippocampal activation, including sleep-stage and memory-system specificity
Publication Details
Publication Date
2007-03-08
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