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Vlisides, P. E.

Publications and source records attributed to Vlisides, P. E..

2 recordsLinked to original sources

Psychedelic Concentrations of Nitrous Oxide Reduce Functional Differentiation in Frontoparietal and Somatomotor Cortical Networks

AO_SCPLOWBSTRACTC_SCPLOWDespite the longstanding use of nitrous oxide and descriptions of its psychological effects more than a century ago, there is a paucity of neurobiological investigation of associated psychedelic experiences. Identifying the impact of nitrous oxide on functional brain networks would advance understanding and contribute to the growing body of research in psychedelic neuroscience. Based on human resting-state fMRI data acquired before and during the administration of 35% nitrous oxide, we measured the brains functional geometry (through analysis of cortical gradients) and temporal dynamics (through analysis of co-activation patterns). Both analyses show that nitrous oxide reduces functional differentiation in frontoparietal and somatomotor networks. Importantly, the subjective psychedelic experience induced by nitrous oxide is inversely correlated with the degree of functional differentiation. Thus, like classical psychedelics acting on 5-HT2 receptors, nitrous oxide flattens the functional geometry of the cortex and disrupts temporal dynamics in association with psychoactive effects.

neuroscience↗

Canonical and Non-Canonical Psychedelic Drugs Induce Common Network Changes in Human Cortex

AO_SCPLOWBSTRACTC_SCPLOWThe neurobiology of the psychedelic experience is not fully elucidated. Identifying common brain network changes induced by both canonical (i.e., acting at the 5-HT2 receptor) and non-canonical psychedelics would provide mechanistic insight into state-specific characteristics. We analyzed whole-brain functional connectivity based on resting-state fMRI data in humans, acquired before and during the administration of nitrous oxide, ketamine, and lysergic acid diethylamide. We report that, despite distinct molecular mechanisms and modes of delivery, all three psychedelics reduced within-network functional connectivity and enhanced between-network functional connectivity. More specifically, all drugs tested increased connectivity between right temporoparietal junction and bilateral intraparietal sulcus as well as between precuneus and left intraparietal sulcus. These regions fall within the posterior cortical "hot zone," posited to mediate the content of consciousness. Thus, both canonical and non-canonical psychedelics modulate networks within an area of known relevance for conscious experience, identifying a biologically plausible candidate for their subjective effects.

neuroscience↗