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Regional specificity of the cingulate cortex thickness association with the intensity of psilocybin experience: a replication study

David Greguš, Jaroslav Hlinka, Filip Tylš, Vojtěch Viktorin, Michaela Viktorinová, Anna Bravermanová, Renáta Androvičová, Veronika Andrashko, Jakub Korčák, Marek Nikolič, Petr Adámek, Michal Beneš, Tomáš Páleníček, Jiřı́ Horáček

Psychopharmacology December 13, 2025 DOI: 10.1007/s00213-025-06983-9 (opens in new tab)

Study at a glance

AI-extracted from the abstract
Characteristics Double-blind, placebo-controlled crossover design Peer reviewed
Sample size 25
Population Healthy participants
Intervention Psilocybin
Dose 0.26 mg/kg
Topics Default mode network Psilocybin
Keywords Anterior cingulate cortex Association psychology Cortex anatomy Posterior cingulate Error-related negativity Magnetic resonance imaging Amygdala Brain mapping Consciousness Hypnosis
Data Zenodo
Key points An anterior–posterior gradient in cingulate thickness significantly predicted psychedelic experience intensity, while the previously reported association between rostral anterior cingulate cortex thickness and emotional responses did not reach statistical significance.

Abstract

Individual variability in psilocybin response is a major challenge for psychedelic-assisted therapy, with structural brain features potentially serving as predictive biomarkers. (Lewis et al. Biomedicines 8(2):34 2020) reported that rostral anterior cingulate cortex thickness predicted emotional experiences under psilocybin, suggesting cortical morphometry as a marker of psychedelic responsivity. This study sought to replicate and extend these findings by examining associations between cingulate thickness and psilocybin-induced altered states of consciousness using comprehensive assessment and rigorous statistical control. Twenty-five healthy participants underwent a double-blind, placebo-controlled crossover design with psilocybin (0.26 mg/kg) and placebo. High-resolution T1-weighted magnetic resonance imaging (MRI) measured cortical thickness across cingulate subregions. Subjective effects were assessed with the Altered States of Consciousness (ASC) questionnaire. Analyses applied false discovery rate (FDR) correction for multiple comparisons. The primary Lewis et al. finding—that rostral anterior cingulate cortex thickness predicts emotional psilocybin responses—showed a comparable effect size (β = 0.523 vs. their range 0.324–0.572) that did not achieve statistical significance (p = 0.297), likely reflecting limited statistical power given our smaller sample (N = 25 vs. N = 55). We identified an anterior–posterior gradient in cingulate thickness that significantly predicted psychedelic experience intensity (r = 0.676, FDR p = 0.0004). Findings indicate that spatial organization within the cingulate cortex provides a neuroanatomical marker of variability in psychedelic response. Results highlight the importance of organizational patterns within the cingulate cortex, rather than focal regional measures, when predicting psychedelic effects.

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