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Acute LSD effects on response inhibition neural networks

André Schmidt, Felix Müller, Claudia Lenz, Patrick C. Dolder, Yasmin Schmid, Davide Zanchi, Undine E. Lang, Matthias E. Liechti, Stefan Borgwardt

Psychological Medicine October 2, 2017 DOI: 10.1017/s0033291717002914 via OpenAlex

Summary

AI-generated from the abstract

Activating the serotonin 2A receptor with LSD impairs the brain's ability to stop or inhibit responses, and this breakdown is linked to visual hallucinations. In a double-blind, placebo-controlled experiment with 18 healthy adults, LSD reduced brain activity in regions including the frontal and cingulate cortex, middle temporal gyrus, and cerebellum during a response-inhibition task. Parahippocampal activation related differently to performance under LSD versus placebo. Less activation in the left superior frontal gyrus during LSD exposure was associated with greater cognitive impairment and visual imagery. The findings suggest that 5-HT2A receptor activation disrupts hippocampal-prefrontal circuits, which may promote visual hallucinations.

Study at a glance

Characteristics Randomized controlled trial Placebo-controlled Double-blind Peer reviewed
Sample size 18
Population Healthy subjects
Intervention LSD
Dose 100 µg
Topics LSD
Keywords Visual hallucination Psychology Parahippocampal gyrus Neuroscience Cingulate cortex
Citations 62
Key finding LSD-induced activation of the serotonin 2A receptor impairs response inhibition by disrupting hippocampal-prefrontal cortex networks, and this disruption is linked to visual hallucinations.

Abstract

Abstract Background Recent evidence shows that the serotonin 2A receptor (5-hydroxytryptamine2A receptor, 5-HT 2A R) is critically involved in the formation of visual hallucinations and cognitive impairments in lysergic acid diethylamide (LSD)-induced states and neuropsychiatric diseases. However, the interaction between 5-HT 2A R activation, cognitive impairments and visual hallucinations is still poorly understood. This study explored the effect of 5-HT 2A R activation on response inhibition neural networks in healthy subjects by using LSD and further tested whether brain activation during response inhibition under LSD exposure was related to LSD-induced visual hallucinations. Methods In a double-blind, randomized, placebo-controlled, cross-over study, LSD (100 µg) and placebo were administered to 18 healthy subjects. Response inhibition was assessed using a functional magnetic resonance imaging Go/No-Go task. LSD-induced visual hallucinations were measured using the 5 Dimensions of Altered States of Consciousness (5D-ASC) questionnaire. Results Relative to placebo, LSD administration impaired inhibitory performance and reduced brain activation in the right middle temporal gyrus, superior/middle/inferior frontal gyrus and anterior cingulate cortex and in the left superior frontal and postcentral gyrus and cerebellum. Parahippocampal activation during response inhibition was differently related to inhibitory performance after placebo and LSD administration. Finally, activation in the left superior frontal gyrus under LSD exposure was negatively related to LSD-induced cognitive impairments and visual imagery. Conclusion Our findings show that 5-HT 2A R activation by LSD leads to a hippocampal–prefrontal cortex-mediated breakdown of inhibitory processing, which might subsequently promote the formation of LSD-induced visual imageries. These findings help to better understand the neuropsychopharmacological mechanisms of visual hallucinations in LSD-induced states and neuropsychiatric disorders.

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