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R. Cordani

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Open access Aug 2026

Flattened brain hierarchy and increased EEG complexity during unusual bodily experiences and out-of-body experiences

Experiences in which the sense of the body becomes distorted offer a unique window into how the brain constructs the bodily self. Despite their clinical relevance in conditions such as depersonalization and body-image disorders, large-scale brain dynamics underlying unusual bodily experiences (UBEs) remain poorly understood, and no prior study has examined them systematically across wakefulness and sleep. Here, we analyzed a high-density EEG dataset including 36 UBE episodes, such as floating sensations, distorted body boundaries, and out-of-body experiences, recorded across rapid eye-movement (REM) sleep, light sleep, sleep arousals, and wakefulness during meditation (N=20). We quantified the temporal irreversibility of neural dynamics, a marker of cortical hierarchical organization, and complemented these analyses with whole-brain signal complexity measures following a within-subject design. UBEs were consistently associated with a global reduction in neural irreversibility and cortical hierarchical differentiation relative to non-UBEs and wakefulness, along with a concurrent increase in whole-brain complexity to levels comparable to wakefulness. Together, these findings suggest that UBEs reflect a neural state combining high informational richness with a transient flattening of cortical hierarchy, a profile that resembles that observed in psychedelic states. Key points UBEs are associated with a global flattening of brain hierarchy measured by EEG. UBEs are associated with increased global EEG complexity, resembling the psychedelic state.

Teresa Campillo-Ferrer, T. Berjaga-Buisan, A. Iadarola et al. · 0 citations
Review Open access Jul 2026

Sleep in Autism Spectrum Disorder: A Systematic Update

Sleep disturbances are a common, heterogeneous comorbidity of autism spectrum disorder (ASD). This systematic review updates the field on sleep in ASD over 2022–2026, with attention to how the evidence has evolved. Eighty-nine studies met inclusion criteria. Sleep disturbance remained more prevalent in autistic individuals than in typically developing peers (47–84%), confirmed by actigraphic and polysomnographic measures. The most distinctive recent advance is in sleep microstructure: spindles, slow-oscillation–spindle coupling, and oscillatory EEG features are emerging as candidate neurophysiological markers. Behavioural and parent-mediated programmes remain the most consistent intervention evidence, while pharmacological trials produced largely null effects; neuromodulation, microbiota-targeted, and physical-activity interventions are preliminary but expanding. The question of whether individuals with ASD sleep worse than peers appears largely settled. Future priorities are harmonized objective sleep protocols, adequately powered trials in emerging intervention categories, and broader inclusion of adults with ASD, who remain markedly under-represented.

M. Veneruso, Antonella Barbieri, G. Silvestrini et al. · 0 citations

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