Neural complexity is increased after low doses of LSD, but not moderate to high doses of oral THC or methamphetamine.
Conor H Murray, Joel Frohlich, Connor J Haggarty, Ilaria Tare, Royce Lee, Harriet de Wit
Neuropsychopharmacology : official publication of the American College of Neuropsychopharmacology June 1, 2024 DOI: 10.1038/s41386-024-01809-2 via PubMed
Summary
AI-generated from the abstractNeural complexity, a measure of brain signal diversity, increases after low doses of LSD (13 and 26 µg) even when volunteers do not report an altered state of consciousness. In three separate placebo-controlled experiments with 73 healthy adults, LSD dose-dependently raised neural complexity, while THC and methamphetamine did not. LSD also reduced delta and theta brain wave power, and those reductions correlated with feelings of elation. THC reduced alpha power, which was linked to altered states, and methamphetamine increased alpha power. The findings show that increased neural complexity is neither necessary nor sufficient for an altered state of consciousness, and that different drugs affect brain activity and subjective experience through distinct mechanisms.
Study at a glance
| Characteristics | Within-subjects placebo-controlled study Peer reviewed |
|---|---|
| Sample size | 73 |
| Population | Healthy volunteers |
| Interventions | LSD delta-9-tetrahydrocannabinol methamphetamine |
| Dose | 13 and 26 µg (LSD), 7.5 and 15 mg (THC), 10 and 20 mg (MA) |
| Duration | Three laboratory visits; EEG recorded during anticipated peak drug effects |
| Topics | Philosophy of mind |
| Keywords | Pharmacology Psychedelics Neuroscience Brain research |
| Citations | 30 |
| Key finding | Low doses of LSD, but not THC or methamphetamine, dose-dependently increased neural complexity in the absence of altered states of consciousness. |
Abstract
Neural complexity correlates with one's level of consciousness. During coma, anesthesia, and sleep, complexity is reduced. During altered states, including after lysergic acid diethylamide (LSD), complexity is increased. In the present analysis, we examined whether low doses of LSD (13 and 26 µg) were sufficient to increase neural complexity in the absence of altered states of consciousness. In addition, neural complexity was assessed after doses of two other drugs that significantly altered consciousness and mood: delta-9-tetrahydrocannabinol (THC; 7.5 and 15 mg) and methamphetamine (MA; 10 and 20 mg). In three separate studies (N = 73; 21, LSD; 23, THC; 29, MA), healthy volunteers received placebo or drug in a within-subjects design over three laboratory visits. During anticipated peak drug effects, resting state electroencephalography (EEG) recorded Limpel-Ziv complexity and spectral power. LSD, but not THC or MA, dose-dependently increased neural complexity. LSD also reduced delta and theta power. THC reduced, and MA increased, alpha power, primarily in frontal regions. Neural complexity was not associated with any subjective drug effect; however, LSD-induced reductions in delta and theta were associated with elation, and THC-induced reductions in alpha were associated with altered states. These data inform relationships between neural complexity, spectral power, and subjective states, demonstrating that increased neural complexity is not necessary or sufficient for altered states of consciousness. Future studies should address whether greater complexity after low doses of LSD is related to cognitive, behavioral, or therapeutic outcomes, and further examine the role of alpha desynchronization in mediating altered states of consciousness.