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Enhanced phase-amplitude coupling of human electrocorticography selectively in the posterior cortical region during rapid eye movement sleep.

Jumpei Togawa, Riki Matsumoto, Kiyohide Usami, Masao Matsuhashi, Morito Inouchi, Katsuya Kobayashi, Takefumi Hitomi, Takuro Nakae, Akihiro Shimotake, Yukihiro Yamao, Takayuki Kikuchi, Kazumichi Yoshida, Takeharu Kunieda, Susumu Miyamoto, Ryosuke Takahashi, Akio Ikeda

Cerebral cortex (New York, N.Y. : 1991) December 20, 2022 DOI: 10.1093/cercor/bhac079 via PubMed

Summary

AI-generated from the abstract

Phase-amplitude coupling (PAC) between slow waves (0.5-0.6 Hz) and gamma activities occurs not only during light sleep and slow-wave sleep but also during wakefulness and rapid eye movement (REM) sleep, as shown by electrocorticography in 11 patients with epilepsy. During slow-wave sleep, PAC is high over a large region, whereas during REM sleep it is stronger in the posterior cortical region around the temporoparietal junction than in the frontal region. PAC also tends to be higher posteriorly during wakefulness. The findings suggest the posterior cortical region has a functional role in REM sleep and may contribute to maintaining the dreaming experience.

Study at a glance

Characteristics Observational cohort Peer reviewed
Sample size 11
Population Patients with intractable focal epilepsy
Keywords Rem sleep Consciousness Electrocorticography Phase-amplitude coupling Wakefulness
Citations 2
Key finding Phase-amplitude coupling between slow waves and gamma activities is stronger in the posterior cortical region than in the frontal region during REM sleep and tends to be higher posteriorly during wakefulness.

Abstract

The spatiotemporal dynamics of interaction between slow (delta or infraslow) waves and fast (gamma) activities during wakefulness and sleep are yet to be elucidated in human electrocorticography (ECoG). We evaluated phase-amplitude coupling (PAC), which reflects neuronal coding in information processing, using ECoG in 11 patients with intractable focal epilepsy. PAC was observed between slow waves of 0.5-0.6 Hz and gamma activities, not only during light sleep and slow-wave sleep (SWS) but even during wakefulness and rapid eye movement (REM) sleep. While PAC was high over a large region during SWS, it was stronger in the posterior cortical region around the temporoparietal junction than in the frontal cortical region during REM sleep. PAC tended to be higher in the posterior cortical region than in the frontal cortical region even during wakefulness. Our findings suggest that the posterior cortical region has a functional role in REM sleep and may contribute to the maintenance of the dreaming experience.

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