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Serotonergic Psychedelics Temporarily Modify Information Transfer in Humans

Joan Francesc Alonso, Sergio Romero, Miguel Ángel Mañanas, Jordi Riba

The International Journal of Neuropsychopharmacology March 29, 2015 DOI: 10.1093/ijnp/pyv039 via OpenAlex

Summary

AI-generated from the abstract

Ayahuasca, a psychedelic containing the serotonergic 5-HT2A agonist N,N-dimethyltryptamine, temporarily disrupts neural hierarchies in the human brain by reducing top-down control and increasing bottom-up information transfer. In ten healthy male volunteers with prior psychedelic experience, transfer entropy analysis of brain oscillations showed that frontal sources decreased their influence over central, parietal, and occipital sites, while posterior sources increased their influence over anterior locations. Decreases in anterior-to-posterior transfer entropy correlated with the intensity of subjective effects, and the imbalance between anterior-to-posterior and posterior-to-anterior transfer entropy correlated with the degree of incapacitation experienced.

Study at a glance

Characteristics Within-subjects, placebo-controlled experimental study Peer reviewed
Sample size 10
Population Healthy male volunteers with prior experience with psychedelics
Intervention Ayahuasca
Duration 2 experimental sessions
Topics Serotonin
Keywords Neuroscience Transfer entropy Psychology Information transfer
Citations 105
Key finding Ayahuasca reduces top-down (frontal-to-posterior) information flow and increases bottom-up (posterior-to-anterior) information flow in the human brain.

Abstract

BACKGROUND: Psychedelics induce intense modifications in the sensorium, the sense of "self," and the experience of reality. Despite advances in our understanding of the molecular and cellular level mechanisms of these drugs, knowledge of their actions on global brain dynamics is still incomplete. Recent imaging studies have found changes in functional coupling between frontal and parietal brain structures, suggesting a modification in information flow between brain regions during acute effects. METHODS: Here we assessed the psychedelic-induced changes in directionality of information flow during the acute effects of a psychedelic in humans. We measured modifications in connectivity of brain oscillations using transfer entropy, a nonlinear measure of directed functional connectivity based on information theory. Ten healthy male volunteers with prior experience with psychedelics participated in 2 experimental sessions. They received a placebo or a dose of ayahuasca, a psychedelic preparation containing the serotonergic 5-HT2A agonist N,N-dimethyltryptamine. RESULTS: The analysis showed significant changes in the coupling of brain oscillations between anterior and posterior recording sites. Transfer entropy analysis showed that frontal sources decreased their influence over central, parietal, and occipital sites. Conversely, sources in posterior locations increased their influence over signals measured at anterior locations. Exploratory correlations found that anterior-to-posterior transfer entropy decreases were correlated with the intensity of subjective effects, while the imbalance between anterior-to-posterior and posterior-to-anterior transfer entropy correlated with the degree of incapacitation experienced. CONCLUSIONS: These results suggest that psychedelics induce a temporary disruption of neural hierarchies by reducing top-down control and increasing bottom-up information transfer in the human brain.

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