bioRxiv · 10.64898/2026.08.21.745777
Psilocybin collapses visual change detection and drives cortical dynamics toward a state of surprise
Abstract
Psilocybin profoundly alters visual perception, yet the neuronal mechanisms underlying these effects remain unclear. Here we combined large-scale Neuropixels recordings with cell-type specific optogenetics in head-fixed mice performing a visual change-detection task. Psilocybin severely impaired task performance without overt motor deficits. In cortex, the drug modestly suppressed activity of layer 5 neurons while preserving representations of image identity. By contrast, psilocybin imposed a 4-Hz oscillation on visually evoked activity that preferentially affected neurons encoding image change rather than image identity. Under psilocybin, expected image repetitions aberrantly recruited change-encoding ensembles and shifted cortical population dynamics towards trajectories normally evoked by genuine stimulus changes. These effects were strongest in somatostatin-expressing (SST) interneurons in visual cortex. The strength of this modulation depended on image structure and was greatest for images with clear, continuous contours, which preferentially recruited change-encoding ensembles. These findings demonstrate that psilocybin drives internally generated cortical surprise signals, providing a circuit mechanism for altered perception in the acute psychedelic state.
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De Filippo, R., Gillis, R., Wyrick, D., Carlson, M., Durand, S., Peene, R. C., Bawany, A., Amaya, A., Grasso, C., Han, W., Kenney, J., Kiselycznyk, C., Loeffler, H., Marks, L. C., Naidoo, R., Ouellette, B., Suarez, L., Swapp, J., Johnson, T., Weber, J., Wilkes, J., Groblewski, P. A., Williford, A., Buice, M., Koch, C., Rembado, I., Lecoq, J. A., Ott, T.. 2026-08-25. Psilocybin collapses visual change detection and drives cortical dynamics toward a state of surprise. https://doi.org/10.64898/2026.08.21.745777
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