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Increased spontaneous MEG signal diversity for psychoactive doses of ketamine, LSD and psilocybin

Michael Schartner, Robin Carhart‐Harris, Adam B. Barrett, Anil K. Seth, Suresh Muthukumaraswamy

Scientific Reports April 19, 2017 DOI: 10.1038/srep46421 via OpenAlex

Summary

AI-generated from the abstract

Measures of neural signal diversity, such as entropy and Lempel-Ziv complexity, are higher during wakeful rest than during anesthesia. In this study, these measures were computed for spontaneous magnetoencephalographic signals from humans under psilocybin, ketamine, and LSD. All three psychedelics produced reliably higher signal diversity, even after controlling for spectral changes, with the most pronounced increase in temporal (single-channel LZ complexity) rather than spatial diversity. Selective correlations emerged between changes in signal diversity and the intensity of psychedelic experience. This is the first time these measures have been applied to the psychedelic state and have yielded values exceeding normal waking consciousness, suggesting that psychedelic phenomenology constitutes an elevated level of consciousness.

Study at a glance

Characteristics Observational study Peer reviewed
Population Humans
Interventions Psilocybin Ketamine LSD
Topics Ketamine Psilocybin
Keywords Consciousness Neuroscience Hallucinogen
Citations 450
Key finding Psychedelic substances psilocybin, ketamine, and LSD increase neural signal diversity beyond levels seen in normal waking consciousness, with the increase most pronounced for temporal signal diversity and correlating with the intensity of psychedelic experience.

Abstract

Abstract What is the level of consciousness of the psychedelic state? Empirically, measures of neural signal diversity such as entropy and Lempel-Ziv (LZ) complexity score higher for wakeful rest than for states with lower conscious level like propofol-induced anesthesia. Here we compute these measures for spontaneous magnetoencephalographic (MEG) signals from humans during altered states of consciousness induced by three psychedelic substances: psilocybin, ketamine and LSD. For all three, we find reliably higher spontaneous signal diversity, even when controlling for spectral changes. This increase is most pronounced for the single-channel LZ complexity measure, and hence for temporal, as opposed to spatial, signal diversity. We also uncover selective correlations between changes in signal diversity and phenomenological reports of the intensity of psychedelic experience. This is the first time that these measures have been applied to the psychedelic state and, crucially, that they have yielded values exceeding those of normal waking consciousness. These findings suggest that the sustained occurrence of psychedelic phenomenology constitutes an elevated level of consciousness - as measured by neural signal diversity.

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