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Advances and challenges in neuroimaging studies on the effects of serotonergic hallucinogens: Contributions of the resting brain.

Felix Müller, Matthias E Liechti, Undine E Lang, Stefan Borgwardt

Progress in brain research January 1, 2018 DOI: 10.1016/bs.pbr.2018.08.004 via PubMed

Summary

AI-generated from the abstract

Studies of hallucinogenic drugs on the resting brain show some consistent findings: psilocybin, LSD, and ayahuasca all decrease cerebral blood flow and increase global functional connectivity in the precuneus and thalamus. LSD also consistently reduces functional connectivity within distinct resting state networks. However, results for connectivity between networks and blood flow in other brain regions show little convergence. These studies are limited by small sample sizes and potential bias from unspecific drug effects on physiology and the vascular system. Current evidence suggests neuroimaging may help reveal the neural correlates of hallucinogenic effects.

Study at a glance

Characteristics Review Peer reviewed
Topics Ayahuasca DMT LSD Mescaline Psilocybin
Keywords Functional connectivity Hallucinogens
Citations 32
Key finding Psilocybin, LSD, and ayahuasca consistently decrease cerebral blood flow and increase global functional connectivity in the precuneus and thalamus, while LSD also reduces functional connectivity within resting state networks.

Abstract

The effects of hallucinogenic drugs on the human brain have been studied since the earliest days of neuroimaging in the 1990s. However, approaches are often hard to compare and results are heterogeneous. In this chapter, we summarize studies investigating the effects of hallucinogens on the resting brain, with a special emphasis on replicability and limitations. In previous studies, similarities were observed between psilocybin, LSD, and ayahuasca, with respect to decreases in cerebral blood flow and increases in global functional connectivity in the precuneus and thalamus. Additionally, LSD consistently decreased functional connectivity within distinct resting state networks. Little convergence was observed for connectivity between networks and for blood flow in other brain regions. Although these studies are limited by small sample sizes and might be biased by unspecific drug effects on physiological parameters and the vascular system, current results indicate that neuroimaging could be a useful tool to elucidate the neuronal correlates of hallucinogenic effects.

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