Characterizing Resting-State Brain Dynamics with Frequency-Resolved EEG Microstates: Parallel Analyses of Psilocybin Microdosing and Acute Inhaled DMT
Povilas Tarailis, Inga Griškova-bulanova
bioRxiv Preprint Server May 5, 2026 preprint DOI: 10.64898/2026.05.05.723034 (opens in new tab)
Study at a glance
AI-extracted from the abstract| Characteristics | Observational study |
|---|---|
| Population | Resting-state EEG data from two publicly available datasets: psilocybin microdosing and acute inhaled DMT |
| Interventions | Psilocybin microdosing acute inhaled DMT |
| Topics | DMT Microdosing Psilocybin |
| Key findings | Frequency-resolved EEG microstate analysis reveals structured alterations in resting-state brain dynamics under psilocybin microdosing and acute DMT that are not captured by broadband analysis alone. |
Abstract
Electroencephalographic (EEG) microstates provide a compact framework for characterizing the temporal organization of large-scale brain activity, yet their sensitivity to altered brain states remains insufficiently explored. In this study, we applied broadband and frequency-resolved EEG microstate analysis to resting-state EEG data from two publicly available datasets acquired under markedly different altered-state conditions: psilocybin microdosing and acute inhaled N,N-dimethyltryptamine (DMT). The aim was to determine whether narrowband microstate analysis reveals structured alterations in resting-state brain dynamics beyond those captured by broadband analysis alone. Psilocybin microdosing was associated with relatively subtle effects, including reduced global field power and frequency-specific alterations in delta- and theta-band microstate parameters, while no significant broadband spatiotemporal changes were observed. In contrast, acute inhaled DMT was associated with broader microstate alterations spanning broadband, delta, theta, and alpha activity, indicating more extensive reorganization of temporal microstate expression. Across both datasets, a descriptive overlap was observed in the delta band, where microstate C showed increased duration and microstate D showed decreased occurrence. Given the substantial differences between datasets in dose, route of administration, temporal dynamics, and study context, these overlapping effects should be interpreted cautiously. Overall, the findings support frequency-resolved EEG microstate analysis as a useful approach for characterizing altered resting-state brain dynamics and for detecting frequency-specific effects that may be obscured in broadband summaries.
In the evidence
This study is part of the evidence base for a synthesis in the library. Here is how each one recorded it.
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Psilocybin microdosing was associated with subtle EEG effects including reduced global field power and frequency-specific delta- and theta-band microstate alterations, with no significant broadband changes.
Synthesized
Comparable studies
Other observational and cohort studies on psilocybin and microdosing, most cited first.
| Study | Year | Design | Participants |
|---|---|---|---|
| Might Microdosing Psychedelics Be Safe and Beneficial? An Initial Exploration. More than a thousand individuals from 59 countries | 2019 | Observational cohort | n = 1,000 |
| Psilocybin microdosers demonstrate greater observed improvements in mood and mental health at one month relative to non-microdosing controls Psilocybin microdosers and non-microdosing comparators | 2022 | Naturalistic observational study | n = 1,133 |
| Psychedelic Microdosing among Young Adults from Southern California Young adults 18-22 years old from Southern California | 2024 | Observational cohort | n = 2,396 |
| Daily self-assessment within a regimen of microdosing indicates enhanced psychological functioning on microdosing days relative to non-microdosing days. Adults who microdose psychedelics, drawn from an international survey | 2025 | Observational cohort | n = 1,435 |