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Increased global functional connectivity correlates with LSD-Induced ego dissolution

Tagliazucchi, Enzo, Roseman, Leor, Kaelen, Mendel, Orban, Csaba, Muthukumaraswamy, Suresh D., Murphy, Kevin, Laufs, Helmut, Leech, Robert, McGonigle, John, Crossley, Nicolas, Bullmore, Edward, Williams, Tim, Bolstridge, Mark, Feilding, Amanda, Nutt, David J. and Carhart-Harris, Robin 2016. Increased global functional connectivity correlates with LSD-Induced ego dissolution. Current Biology 26 (8) , pp. 1043-1050. 10.1016/j.cub.2016.02.010

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Abstract

Lysergic acid diethylamide (LSD) is a non-selective serotonin-receptor agonist that was first synthesized in 1938 and identified as (potently) psychoactive in 1943. Psychedelics have been used by indigenous cultures for millennia [1]; however, because of LSD’s unique potency and the timing of its discovery (coinciding with a period of major discovery in psychopharmacology), it is generally regarded as the quintessential contemporary psychedelic [2]. LSD has profound modulatory effects on consciousness and was used extensively in psychological research and psychiatric practice in the 1950s and 1960s [3]. In spite of this, however, there have been no modern human imaging studies of its acute effects on the brain. Here we studied the effects of LSD on intrinsic functional connectivity within the human brain using fMRI. High-level association cortices (partially overlapping with the default-mode, salience, and frontoparietal attention networks) and the thalamus showed increased global connectivity under the drug. The cortical areas showing increased global connectivity overlapped significantly with a map of serotonin 2A (5-HT2A) receptor densities (the key site of action of psychedelic drugs [4]). LSD also increased global integration by inflating the level of communication between normally distinct brain networks. The increase in global connectivity observed under LSD correlated with subjective reports of “ego dissolution.” The present results provide the first evidence that LSD selectively expands global connectivity in the brain, compromising the brain’s modular and “rich-club” organization and, simultaneously, the perceptual boundaries between the self and the environment.

Item Type: Article
Date Type: Publication
Status: Published
Schools: Psychology
Physics and Astronomy
Cardiff University Brain Research Imaging Centre (CUBRIC)
Publisher: Elsevier
ISSN: 0960-9822
Date of Acceptance: 2 February 2016
Last Modified: 08 May 2019 14:04
URI: http://orca.cf.ac.uk/id/eprint/95412

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