Slow waves and learning: beyond correlations.
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Summary
Reduction of SWA by an average of 31% prevented overnight improvement in visuomotor performance and that changes in SWA over the right parietal cortex, as measured with high-density EEG, correlated with changes in performance.
- Type
- letter
- Published
- 2009-10-01
- Cited by
- 7
- References
- 11
- Access
- Open access
- OpenAlex
- https://openalex.org/W49790567
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:19917744
Keywords
Wakefulness, Electroencephalography, Psychology, Neuroscience, Memory consolidation
References
- Slow wave sleep and REM sleep awakenings do not affect sleep dependent memory consolidation.
- Sleep-dependent improvement in visuomotor learning: a causal role for slow waves.
- A Role for Non-Rapid-Eye-Movement Sleep Homeostasis in Perceptual Learning
- Boosting slow oscillations during sleep potentiates memory
- Performance and sleepiness following moderate sleep disruption and slow wave sleep deprivation.
- Arm immobilization causes cortical plastic changes and locally decreases sleep slow wave activity
- Dependence on REM sleep of overnight improvement of a perceptual skill.
- Slow‐wave sleep deprivation and waking function
- Local sleep and learning
- Effect of unilateral somatosensory stimulation prior to sleep on the sleep EEG in humans
- Visual Discrimination Task Improvement: A Multi-Step Process Occurring During Sleep
Cited by
- Delta rhythms as a substrate for holographic processing in sleep and wakefulness
- Investigating epileptiform activity associated with slow wave sleep
- Sleep smart—optimizing sleep for declarative learning and memory
- EEG Power During Waking and NREM Sleep in Primary Insomnia
- A Neocortical Delta Rhythm Facilitates Reciprocal Interlaminar Interactions via Nested Theta Rhythms
- A model of delta frequency neuronal network activity and theta-gamma interactions in rat sensorimotor cortex in vitro
- The young and the rest-less.
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