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LSD alters dynamic integration and segregation in the human brain.

Andrea I Luppi, Robin L Carhart-Harris, Leor Roseman, Ioannis Pappas, David K Menon, Emmanuel A Stamatakis

NeuroImage February 15, 2021 DOI: 10.1016/j.neuroimage.2020.117653 via PubMed

Summary

AI-generated from the abstract

LSD alters brain network dynamics non-uniformly over time, making globally segregated connectivity states more complex and weakening the link between functional and anatomical connectivity. The drug reduces functional connectivity in the anterior medial prefrontal cortex specifically during states of high segregation. Ego dissolution was predicted by increased small-world organization during a state of high global integration. These temporally-specific effects reveal a more nuanced picture of psychedelic-induced changes in brain connectivity and complexity than previously reported.

Study at a glance

Characteristics Observational cohort Peer reviewed
Population Human participants
Intervention LSD
Topics LSD
Keywords Complexity FMRI Dynamics Integration-segregation Small-world network
Citations 186
Key finding LSD makes globally segregated sub-states of dynamic functional connectivity more complex and weakens the relationship between functional and anatomical connectivity, with ego dissolution predicted by increased small-world organization during high global integration.

Abstract

Investigating changes in brain function induced by mind-altering substances such as LSD is a powerful method for interrogating and understanding how mind interfaces with brain, by connecting novel psychological phenomena with their neurobiological correlates. LSD is known to increase measures of brain complexity, potentially reflecting a neurobiological correlate of the especially rich phenomenological content of psychedelic-induced experiences. Yet although the subjective stream of consciousness is a constant ebb and flow, no studies to date have investigated how LSD influences the dynamics of functional connectivity in the human brain. Focusing on the two fundamental network properties of integration and segregation, here we combined graph theory and dynamic functional connectivity from resting-state functional MRI to examine time-resolved effects of LSD on brain networks properties and subjective experiences. Our main finding is that the effects of LSD on brain function and subjective experience are non-uniform in time: LSD makes globally segregated sub-states of dynamic functional connectivity more complex, and weakens the relationship between functional and anatomical connectivity. On a regional level, LSD reduces functional connectivity of the anterior medial prefrontal cortex, specifically during states of high segregation. Time-specific effects were correlated with different aspects of subjective experiences; in particular, ego dissolution was predicted by increased small-world organisation during a state of high global integration. These results reveal a more nuanced, temporally-specific picture of altered brain connectivity and complexity under psychedelics than has previously been reported.

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