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EEG Microstate Dynamics Associated with Dream-Like Experiences During the Transition to Sleep.

Sarah Diezig, Simone Denzer, Peter Achermann, Fred W Mast, Thomas Koenig

Brain topography March 1, 2024 DOI: 10.1007/s10548-022-00923-y via PubMed

Summary

AI-generated from the abstract

During the transition to sleep, reflective awareness—the ability to recognize experiences as internally generated—breaks down before phenomenal awareness, the basic experience itself, fades. Dream-like experiences, characterized by uncontrolled thinking and perceptual images mistaken as real, are associated with an inverse relationship between cognitive effects and physiological activation in the brain. In 45 healthy young subjects, EEG microstate analysis showed that dream-like experiences correlated with increased presence of a microstate sourced in the superior and middle frontal gyrus and precuneus, and decreased presence of a microstate linked to higher-order visual areas. This suggests disengagement of cognitive control systems mediated by specific inhibitory microstates.

Study at a glance

Characteristics Observational study Peer reviewed
Sample size 45
Population Healthy young subjects
Keywords Dream-like experiences EEG Microstates Hypnagogic state Phenomenal consciousness Reflective consciousness
Citations 19
Key finding Dream-like experiences during the transition to sleep were associated with increased presence of a microstate in the superior and middle frontal gyrus and precuneus and decreased presence of a microstate in higher-order visual areas, indicating disengagement of cognitive control systems.

Abstract

Consciousness always requires some representational content; that is, one can only be conscious about something. However, the presence of conscious experience (awareness) alone does not determine whether its content is in line with the external and physical world. Dreams, apart from certain forms of hallucinations, typically consist of non-veridical percepts, which are not recognized as false, but rather considered real. This type of experiences have been described as a state of dissociation between phenomenal and reflective awareness. Interestingly, during the transition to sleep, reflective awareness seems to break down before phenomenal awareness as conscious experience does not immediately fade with reduced wakefulness but is rather characterized by the occurrence of uncontrolled thinking and perceptual images, together with a reduced ability to recognize the internal origin of the experience. Relative deactivation of the frontoparietal and preserved activity in parieto-occipital networks has been suggested to account for dream-like experiences during the transition to sleep. We tested this hypothesis by investigating subjective reports of conscious experience and large-scale brain networks using EEG microstates in 45 healthy young subjects during the transition to sleep. We observed an inverse relationship between cognitive effects and physiological activation; dream-like experiences were associated with an increased presence of a microstate with sources in the superior and middle frontal gyrus and precuneus. Additionally, the presence of a microstate associated with higher-order visual areas was decreased. The observed inverse relationship might therefore indicate a disengagement of cognitive control systems that is mediated by specific, inhibitory EEG microstates.

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