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Effects of LSD on music-evoked brain activity

Mendel Kaelen, Romy Lorenz, Frederick S. Barrett, Leor Roseman, Csaba Orbán, Andre Santos-Ribeiro, Matthew B. Wall, Amanda Feilding, David Nutt, Suresh Muthukumaraswamy, Robin Carhart‐Harris, Robert Leech

bioRxiv (Cold Spring Harbor Laboratory) June 25, 2017 preprint DOI: 10.1101/153031 via OpenAlex

Summary

AI-generated from the abstract

Lysergic acid diethylamide (LSD) alters how the brain processes music, particularly by enhancing activity and connectivity in networks linked to music perception and emotion. Sixteen healthy volunteers listened to a 7-minute music piece during fMRI after taking either 75 mcg of LSD or a placebo. The acoustic feature of timbral complexity—the richness of the music's spectral distribution—drove the most pronounced changes in brain activity and connectivity under LSD. These changes correlated with increased feelings of wonder evoked by the music. The results suggest a neurobiological basis for why music is useful in psychedelic therapy.

Study at a glance

Characteristics Randomized controlled trial
Sample size 16
Population Healthy participants
Intervention Lysergic acid diethylamide (LSD)
Dose 75 mcg
Keywords Neuroscience Active listening Sound perception Music psychology Cognitive psychology
Citations 20
Key finding LSD enhances music-evoked brain activity and connectivity, especially related to timbral complexity, and this is associated with increased feelings of wonder.

Abstract

Abstract Music is a highly dynamic stimulus, and consists of distinct acoustic features, such as pitch, rhythm and timbre. Neuroimaging studies highlight a hierarchy of brain networks involved in music perception. Psychedelic drugs such as lysergic acid diethylamide (LSD) temporary disintegrate the normal hierarchy of brain functioning, and produce profound subjective effects, including enhanced music-evoked emotion. The primary objective of this study was to investigate the acute effects of LSD on music-evoked brain-activity under naturalistic music listening conditions. 16 healthy participants were enrolled in magnetic resonance imaging (fMRI) while listening to a 7-minute music piece under eyes-closed conditions on two separate visits (LSD (75 mcg) and placebo). Dynamic time courses for acoustic features were extracted from the music excerpts, and were entered into subject-level fMRI analyses as regressors of interest. Differences between conditions were assessed at group level subsequently, and were related to changes in music-evoked emotions via correlation analyses. Psycho-physiological interactions (PPIs) were carried out to further interrogate underlying music-specific changes in functional connectivity under LSD. Results showed pronounced cortical and subcortical changes in music-evoked brain activity under LSD. Most notable changes in brain activity and connectivity were associated with the component timbral complexity, representing the complexity of the music’s spectral distribution, and these occurred in brain networks previously identified for music-perception and music-evoked emotion, and showed an association with enhanced music-evoked feelings of wonder under LSD. The findings shed light on how the brain processes music under LSD, and provide a neurobiological basis for the usefulness of music in psychedelic therapy.

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