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A corticostriatal circuit updates subjective beliefs about latent task states

Constantinople, C. M.; DeMaegd, M. L.; Hocker, D.; Gurnani, H.; Adler-Wachter, M.; Schindler, J.; Schiereck, S. S.; Savin, C.

2026-03-14 neuroscience
10.64898/2026.03.12.711369 bioRxiv
Show abstract

Beliefs about states of the world profoundly impact decision-making and learning, but little is known about how neural circuits represent and update beliefs. We performed projection-specific recordings and perturbations from neurons in the orbitofrontal cortex (OFC) projecting to the intermediate or rostral caudate putamen (CPi/CPr) in rats performing a task with hidden reward states. Stimulating OFC[->]CPi neurons biased rats beliefs towards high reward states. Recordings from optogenetically-tagged OFC[->]CPi neurons showed that they encoded evidence for high reward states, and evidence encoding was shaped by local inhibition. Finally, projection-specific perturbations disrupted encoding of hidden states within OFC via long-range cortico-basal ganglia-thalamic loops. These findings reveal the circuit implementation of a core cognitive computation, updating subjective beliefs about abstract latent states of the environment.

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