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Updated: Sep 27, 2025

A Method for Remotely Silencing Neural Activity in Rodents During Discrete Phases of Learning
Published on: June 22, 2015
Targeted effects of ketamine on perceptual expectation during mediated learning in rats
Leah M Fleming1,2, Frances-Julia B Jaynes1,3,4, Summer L Thompson1
1Department of Psychiatry, Yale University School of Medicine, New Haven, CT, USA.
Rationale:
While neural correlates of hallucinations are known, the mechanisms have remained elusive. Mechanistic insight is more practicable in animal models, in which causal relationships can be established. Recent work developing animal models of hallucination susceptibility has focused on the genesis of perceptual expectations and perceptual decision-making. Both processes are encompassed within mediated learning, which involves inducing a strong perceptual expectation via associative learning, retrieving that memory representation, and deciding whether this internally generated percept is predictive of an external outcome. Mediated learning in rodents is sensitive to many psychotomimetic manipulations. However, we do not know if these manipulations selectively alter learning of perceptual expectations versus their retrieval because of their presence throughout all task phases.
Objectives:
Here, we used mediated learning to study the targeted effect of a psychotomimetic agent on the retrieval of perceptual expectation.
Methods:
We administered (R,S)-ketamine to rats selectively during the devaluation phase of a mediated learning task, when the representation of the expected cue is retrieved, to test the hypothesis that internally generated perceptual experiences underlie this altered mediated learning.
Results:
We found that ketamine increased only mediated learning at a moderate dose in rats, but impaired direct learning at the high dose.
Conclusions:
These results suggest that ketamine can augment retrieval of perceptual expectations and thus this may be how it induces hallucination-like experiences in humans. More broadly, mediated learning may unite the conditioning, perceptual decision-making, and even reality monitoring accounts of psychosis in a manner that translates across species.

