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The unique neural signature of your trip: Functional connectome fingerprints of subjective psilocybin experience

Juan Carlos Farah, Pablo Mallaroni, Enrico Amico, Hanna M. Tolle, Natasha L. Mason, Johannes G. Ramaekers

Network Neuroscience November 1, 2023 DOI: 10.1162/netn_a_00349 via OpenAlex

Summary

AI-generated from the abstract

Functional connectomes become more idiosyncratic under psilocybin, with greater dissimilarity between individuals than under placebo. While idiosyncratic features in placebo subjects appear mainly in the frontoparietal network, under psilocybin they concentrate in the default mode network (DMN). A DMN-focused pattern predicts subjective psilocybin experience, marked by reduced within-DMN and DMN-limbic connectivity and increased connectivity between the DMN and attentional systems. These findings link psilocybin's brain effects to subjective experience and demonstrate the value of brain-fingerprinting in pharmacological neuroimaging.

Study at a glance

Characteristics Observational study Peer reviewed
Population Healthy volunteers
Intervention Psilocybin
Topics Default mode network Psilocybin
Keywords Functional connectivity Neuroscience Connectome
Citations 21
Key finding Psilocybin increases idiosyncrasy of functional connectomes, with a DMN-focused connectivity pattern that predicts subjective drug experience.

Abstract

Abstract The emerging neuroscientific frontier of brain fingerprinting has recently established that human functional connectomes (FCs) exhibit fingerprint-like idiosyncratic features, which map onto heterogeneously distributed behavioral traits. Here, we harness brain-fingerprinting tools to extract FC features that predict subjective drug experience induced by the psychedelic psilocybin. Specifically, in neuroimaging data of healthy volunteers under the acute influence of psilocybin or a placebo, we show that, post psilocybin administration, FCs become more idiosyncratic owing to greater intersubject dissimilarity. Moreover, whereas in placebo subjects idiosyncratic features are primarily found in the frontoparietal network, in psilocybin subjects they concentrate in the default mode network (DMN). Crucially, isolating the latter revealed an FC pattern that predicts subjective psilocybin experience and is characterized by reduced within-DMN and DMN-limbic connectivity, as well as increased connectivity between the DMN and attentional systems. Overall, these results contribute to bridging the gap between psilocybin-mediated effects on brain and behavior, while demonstrating the value of a brain-fingerprinting approach to pharmacological neuroimaging.

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