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Updated: Jun 3, 2026

Measuring Neural Mechanisms Underlying Sleep-Dependent Memory Consolidation During Naps in Early Childhood
Published on: October 2, 2019
Cortical activation patterns herald successful dream recall after NREM and REM sleep
Sarah Laxhmi Chellappa1, Sylvia Frey, Vera Knoblauch
1Centre for Chronobiology, Psychiatric Hospital of the University of Basel, Wilhelm, Kleinstrasse 27, CH-4025 Basel, Switzerland. Sarah.Chellappa@upkbs.ch
Abstract:
Dreaming pertains to both REM and NREM sleep. However, frequency and regional specific differences in EEG activity remains controversial. We investigated NREM and REM sleep EEG power density associated with and without dream recall in 17 young subjects during a 40-h multiple nap protocol under constant routine conditions. NREM sleep was associated with lower EEG power density for dream recall in the delta range, particularly in frontal derivations, and in the spindle range in centro-parietal derivations. REM sleep was associated with low frontal alpha activity and with high alpha and beta activity in occipital derivations. Our data indicate that specific EEG frequency- and topography changes underlie differences between dream recall and no recall after both NREM and REM sleep awakening. This dual NREM-REM sleep modulation holds strong implications for the mechanistic understanding of this complex ongoing cognitive process.
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