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A parietal grid-like code rotates with cognitive maps but lags rapid behavioral transfer.
Linda Ǫ Yu1, Avinash Rao Vaidya2, Aigerim Aya Akhmetzhanova1,3
1Carney Institute for Brain Sciences, Brown University, Providence, Rhode Island.
Biorxiv : the Preprint Server for Biology
|November 24, 2025
Summary
Neural grid codes help generalize knowledge, but their dynamics at context shifts are unclear. While a parietal grid code rotates, other brain areas drive rapid knowledge transfer and adaptation.
Area of Science:
- Neuroscience
- Cognitive Science
- Computational Neuroscience
Background:
- The neural grid code is theorized to enable relational knowledge generalization and transfer for behavioral adaptation.
- Understanding how grid representations change during context transitions and their link to behavior is limited.
Purpose of the Study:
- To investigate if neural grid representations rotate to align with behavioral goals during context transitions.
- To determine if these rotations underpin knowledge transfer and rapid behavioral adaptation.
Main Methods:
- fMRI was used to measure neural representations in human participants.
- Participants performed a task involving abrupt, synchronous rotations of target locations at unsignaled state changes.
- Behavioral performance and neural activity were analyzed in relation to context transitions.
Main Results:
- Participants demonstrated rapid inference of target locations, including novel ones, after state changes, indicating zero-shot transfer.
- A cognitive grid-like code was observed in the right posterior parietal cortex, with its phase angle rotating with target positions.
- The observed rotation of the parietal grid code was too slow to explain rapid behavioral improvements; these were linked to frontoparietal and orbitofrontal cortex activity.
Conclusions:
- Humans exhibit rapid knowledge transfer capabilities, adapting behavior in novel circumstances.
- A parietal grid-like code does rotate into behaviorally relevant frames, but its role in rapid adaptation is questionable.
- Alternative neural mechanisms beyond parietal grid code rotations likely support swift knowledge transfer and behavioral adaptation.
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