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Time-resolved coupling between connectome harmonics and subjective experience under the psychedelic DMT

Jakub Vohryzek, Selen Atasoy, Gustavo Deco, Christopher Timmermann, Andrea I. Luppi, Robin Carhart‐Harris, Morten L. Kringelbach

bioRxiv (Cold Spring Harbor Laboratory) May 31, 2024 preprint DOI: 10.1101/2024.05.30.596410 via OpenAlex

Summary

AI-generated from the abstract

Psychedelic substances like DMT, psilocybin, LSD, and ketamine alter brain function by reshaping the repertoire of connectome harmonics—patterns of neural activity that depend on the brain's structural network of white matter pathways. Under DMT, the entropy of these harmonics increases, indicating a more diverse range of brain states. For the first time, changes in the energy spectrum and entropy of connectome harmonics were shown to track the intensity of subjective experience in real time, suggesting a close link between the brain's harmonic activity and conscious experience.

Study at a glance

Characteristics Observational study
Intervention DMT
Keywords Connectome Neuroscience Consciousness Harmonics Perception
Citations 8
Key finding The connectome harmonic repertoire under DMT is reshaped similarly to other psychedelics, and measures of energy spectrum difference and repertoire entropy index the intensity of subjective experience in a time-resolved manner.

Abstract

Exploring the intricate relationship between brain's structure and function, and how this affects subjective experience is a fundamental pursuit in neuroscience. Psychedelic substances offer a unique insight into the influences of specific neurotransmitter systems on perception, cognition and consciousness. Specifically, their impact on brain function propagates across the structural connectome, a network of white matter pathways linking different regions. To comprehensively grasp the effects of psychedelic compounds on brain function, we used a theoretically rigorous framework known as connectome harmonic decomposition. This framework provides a robust method to characterize how brain function intricately depends on the organized network structure of the human connectome. We show that the connectome harmonic repertoire under DMT is reshaped in line with other reported psychedelic compounds; psilocybin, LSD and ketamine. Furthermore, we show that the repertoire entropy of connectome harmonics increases under DMT, as with those other psychedelics. Importantly, we demonstrate for the first time that measures of energy spectrum difference and repertoire entropy of connectome harmonics indexes the intensity of subjective experience of the participants in a time-resolved manner reflecting close coupling between connectome harmonics and subjective experience.

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