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Psilocybin Induces Aberrant Prediction Error Processing of Tactile Mismatch Responses—A Simultaneous EEG–FMRI Study

Patricia Duerler, Silvia Brem, Gorka Fraga González, Tiffany Neef, Micah Allen, Peter Zeidman, Philipp Stämpfli, Franz X. Vollenweider, Katrin H. Preller

Cerebral Cortex June 10, 2021 DOI: 10.1093/cercor/bhab202 (opens in new tab)

Study at a glance

AI-extracted from the abstract
Characteristics Experimental study with pharmacological manipulation and simultaneous EEG-fMRI recording Peer reviewed
Intervention Psilocybin
Topics Psilocybin
Keywords Electroencephalography EEG-FMRI Audiology Pattern recognition psychology Artificial intelligence Cognitive psychology Hallucinogen
Citations 64
Key findings Psilocybin reduces tactile mismatch responses in frontal regions, visual cortex, and cerebellum, and alters body- and self-experience through aberrant prediction error processing.

Abstract

Abstract As source of sensory information, the body provides a sense of agency and self/non-self-discrimination. The integration of bodily states and sensory inputs with prior beliefs has been linked to the generation of bodily self-consciousness. The ability to detect surprising tactile stimuli is essential for the survival of an organism and for the formation of mental body representations. Despite the relevance for a variety of psychiatric disorders characterized by altered body and self-perception, the neurobiology of these processes is poorly understood. We therefore investigated the effect of psilocybin (Psi), known to induce alterations in self-experience, on tactile mismatch responses by combining pharmacological manipulations with simultaneous electroencephalography–functional magnetic resonance imaging (EEG–fMRI) recording. Psi reduced activity in response to tactile surprising stimuli in frontal regions, the visual cortex, and the cerebellum. Furthermore, Psi reduced tactile mismatch negativity EEG responses at frontal electrodes, associated with alterations of body- and self-experience. This study provides first evidence that Psi alters the integration of tactile sensory inputs through aberrant prediction error processing and highlights the importance of the 5-HT2A system in tactile deviancy processing as well as in the integration of bodily and self-related stimuli. These findings may have important implications for the treatment of psychiatric disorders characterized by aberrant bodily self-awareness.

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