Related Experiment Video
Updated: Apr 17, 2026

Administration of Δ9-Tetrahydrocannabinol (THC) in Adolescent and Adult Mice
Published on: August 1, 2025
Δ9-THC Disrupts Gamma (γ)-Band Neural Oscillations in Humans
Jose Cortes-Briones1, Patrick D Skosnik2, Daniel Mathalon3
11] Psychiatry Service, VA Connecticut Healthcare System, West Haven, CT, USA [2] Department of Psychiatry, Yale University School of Medicine, New Haven, CT, USA.
Abstract:
Gamma (γ)-band oscillations play a key role in perception, associative learning, and conscious awareness and have been shown to be disrupted by cannabinoids in animal studies. The goal of this study was to determine whether cannabinoids disrupt γ-oscillations in humans and whether these effects relate to their psychosis-relevant behavioral effects. The acute, dose-related effects of Δ-9-tetrahydrocannabinol (Δ(9)-THC) on the auditory steady-state response (ASSR) were studied in humans (n=20) who completed 3 test days during which they received intravenous Δ(9)-THC (placebo, 0.015, and 0.03 mg/kg) in a double-blind, randomized, crossover, and counterbalanced design. Electroencephalography (EEG) was recorded while subjects listened to auditory click trains presented at 20, 30, and 40 Hz. Psychosis-relevant effects were measured with the Positive and Negative Syndrome scale (PANSS). Δ(9)-THC (0.03 mg/kg) reduced intertrial coherence (ITC) in the 40 Hz condition compared with 0.015 mg/kg and placebo. No significant effects were detected for 30 and 20 Hz stimulation. Furthermore, there was a negative correlation between 40 Hz ITC and PANSS subscales and total scores under the influence of Δ(9)-THC. Δ(9)-THC (0.03 mg/kg) reduced evoked power during 40 Hz stimulation at a trend level. Recent users of cannabis showed blunted Δ(9)-THC effects on ITC and evoked power. We show for the first time in humans that cannabinoids disrupt γ-band neural oscillations. Furthermore, there is a relationship between disruption of γ-band neural oscillations and psychosis-relevant phenomena induced by cannabinoids. These findings add to a growing literature suggesting some overlap between the acute effects of cannabinoids and the behavioral and psychophysiological alterations observed in psychotic disorders.
Insights
Cannabis disrupts human brain gamma-band oscillations, specifically at 40 Hz, and this disruption correlates with psychosis-like symptoms. These effects were less pronounced in recent cannabis users.
Area of Science:
- Neuroscience
- Psychopharmacology
Background:
- Gamma (γ)-band oscillations are crucial for cognitive functions like perception and awareness.
- Previous animal studies indicated cannabinoids disrupt γ-oscillations, but human data were lacking.
Purpose of the Study:
- To investigate if cannabinoids disrupt γ-oscillations in humans.
- To explore the relationship between these disruptions and psychosis-relevant behavioral effects.
Main Methods:
- Twenty human participants received intravenous Δ-9-tetrahydrocannabinol (Δ(9)-THC) at placebo, 0.015, or 0.03 mg/kg doses.
- Electroencephalography (EEG) recorded brain activity during auditory steady-state response (ASSR) at 20, 30, and 40 Hz.
- Psychosis-relevant effects were assessed using the Positive and Negative Syndrome Scale (PANSS).
Main Results:
- A high dose of Δ(9)-THC (0.03 mg/kg) significantly reduced 40 Hz intertrial coherence (ITC) compared to placebo.
- A negative correlation was observed between 40 Hz ITC and PANSS scores, indicating a link to psychosis-related symptoms.
- Δ(9)-THC showed a trend towards reducing evoked power at 40 Hz, with blunted effects in recent cannabis users.
Conclusions:
- This study provides the first human evidence that cannabinoids disrupt γ-band neural oscillations.
- The findings link cannabinoid-induced disruption of γ-oscillations to psychosis-relevant phenomena.
- These results suggest a potential overlap between acute cannabinoid effects and alterations seen in psychotic disorders.
Related Concept Videos
Chemotherapy-Induced Nausea and Vomiting: Cannabinoids
Two synthetic agonists of THC,...
Hallucinogens and Psychedelics
Marijuana, derived from the dried leaves and flowers of the hemp plant, contains...
CNS Stimulants: Cocaine, Amphetamines and Cannabinoids
Drugs Affecting Neurotransmitter Synthesis

