Skip to content

The effects of psilocybin and MDMA on between-network resting state functional connectivity in healthy volunteers

Leor Roseman, Robert Leech, Amanda Feilding, David Nutt, Robin Carhart-Harris

Frontiers in Human Neuroscience May 27, 2014 DOI: 10.3389/fnhum.2014.00204 (opens in new tab)

Study at a glance

AI-extracted from the abstract
Characteristics Placebo-controlled study Peer reviewed
Interventions Psilocybin MDMA
Topics Default mode network MDMA Psilocybin
Keywords Hallucinogen Consciousness Resting State FMRI Altered state Functional connectivity Cognitive psychology
Citations 293
Key points Psilocybin increased between-network resting-state functional connectivity, making brain networks less differentiated, while MDMA had less marked effects.

Abstract

Perturbing a system and observing the consequences is a classic scientific strategy for understanding a phenomenon. Psychedelic drugs perturb consciousness in a marked and novel way and thus are powerful tools for studying its mechanisms. In the present analysis, we measured changes in resting-state functional connectivity (RSFC) between a standard template of different independent components analysis (ICA)-derived resting state networks (RSNs) under the influence of two different psychoactive drugs, the stimulant/psychedelic hybrid, MDMA, and the classic psychedelic, psilocybin. Both were given in placebo-controlled designs and produced marked subjective effects, although reports of more profound changes in consciousness were given after psilocybin. Between-network RSFC was generally increased under psilocybin, implying that networks become less differentiated from each other in the psychedelic state. Decreased RSFC between visual and sensorimotor RSNs was also observed. MDMA had a notably less marked effect on between-network RSFC, implying that the extensive changes observed under psilocybin may be exclusive to classic psychedelic drugs and related to their especially profound effects on consciousness. The novel analytical approach applied here may be applied to other altered states of consciousness to improve our characterization of different conscious states and ultimately advance our understanding of the brain mechanisms underlying them.

Explore topics