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Electrophysiological Correlates of Dream Recall During REM Sleep: Evidence from Multiple Awakenings and Within-Subjects Design.

Serena Scarpelli, Chiara Bartolacci, Aurora D'Atri, Milena Camaioni, Ludovica Annarumma, Maurizio Gorgoni, Chiara Cloos, Michele Ferrara, Luigi De Gennaro

Nature and Science of Sleep January 1, 2020 DOI: 10.2147/nss.s279786 (opens in new tab) via PubMed

Summary

AI-generated from the abstract

Dream recall is associated with higher brain activation during REM sleep, regardless of the time of night. Theta, delta, and beta EEG bands were analyzed in 10 subjects who underwent multiple awakenings during REM sleep across the night. Results showed no significant effect of time of night or interaction, but significant differences in beta band activity over the occipital area and in the delta/beta activation index over the parietal area. These findings support the activation-hypothesis, which links dream recall to desynchronized EEG activity, and suggest that such recall is related to state-like factors rather than homeostatic pressure.

Study at a glance

Characteristics Observational cohort Peer reviewed
Sample size 10
Population Subjects showing combinations of dream recall and non-recall conditions in both first and second parts of the night
Topics Dreaming
Keywords EEG Rem sleep Activation hypothesis Multiple awakenings
Key finding Dream recall is associated with higher activation regardless of homeostatic pressure across the night of sleep, providing evidence in favor of the activation-hypothesis.

Abstract

In the current study, we aimed to investigate the EEG correlates of dream recall (DR) monitoring both the homeostatic and state-trait like factors. We assessed the influence of the time of night on the EEG correlates of DR from REM sleep. Specifically, we tested the continuity-hypothesis (on the theta EEG band) and the activation-hypothesis (on the delta and beta bands). Twenty-seven subjects underwent polysomnography with multiple provoked awakenings during REM sleep. Only the subjects showing combinations of dream recall (REC) and non-REC (NREC) conditions in both first (1st-2nd sleep cycle) and second (3rd-4th sleep cycle) part of the night were included in the analyses. The final sample was composed of 10 subjects (mean age 24±0.70). EEG power spectra of the 5-min of REM sleep preceding each awakening were computed by a fast Fourier transform. The following frequency bands were considered: delta (0.50-4.75 Hz), theta (5.00-7.75 Hz), and beta (16.00-24.75 Hz). We also calculated the delta/beta power ratio as an integrated EEG index of activation. The 2×2 within-subjects ANOVA recall × time revealed: a) no significant effect for time and no interaction; b) significant differences over the occipital area in the beta band; c) significant differences over the parietal area for the activation index values. Overall, the results indicated that DR is associated with higher activation regardless of homeostatic pressure across the night of sleep. In line with recent findings, we have shown that DR is predicted by desynchronized EEG activity during REM sleep, providing clear evidence in favor of the activation-hypothesis. We have also confirmed that the EEG pattern of DR can be ascribed to state-like factors. Further studies should assess whether homeostatic modulation may interact with some dream features and the related EEG predictors.

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