Shifts in attention drive context-dependent subspace encoding in anterior cingulate cortex in mice during decision making

Hajnal MA, Tran D, Szabó Z, Albert A, Safaryan K, Einstein M, Vallejo Martelo M, Polack P-O, Golshani P, Orbán G. 2024. Shifts in attention drive context-dependent subspace encoding in anterior cingulate cortex in mice during decision making. Nature Communications. 15, 5559.

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Journal Article | Published | English

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Author
Hajnal, Márton Albert; Tran, Duy; Szabó, ZsomborISTA ; Albert, Andrea; Safaryan, Karen; Einstein, Michael; Vallejo Martelo, Mauricio; Polack, Pierre-Olivier; Golshani, Peyman; Orbán, Gergő
Abstract
Attention supports decision making by selecting the features that are relevant for decisions. Selective enhancement of the relevant features and inhibition of distractors has been proposed as potential neural mechanisms driving this selection process. Yet, how attention operates when relevance cannot be directly determined, and the attention signal needs to be internally constructed is less understood. Here we recorded from populations of neurons in the anterior cingulate cortex (ACC) of mice in an attention-shifting task where relevance of stimulus modalities changed across blocks of trials. In contrast with V1 recordings, decoding of the irrelevant modality gradually declined in ACC after an initial transient. Our analytical proof and a recurrent neural network model of the task revealed mutually inhibiting connections that produced context-gated suppression as observed in mice. Using this RNN model we predicted a correlation between contextual modulation of individual neurons and their stimulus drive, which we confirmed in ACC but not in V1.
Publishing Year
Date Published
2024-07-02
Journal Title
Nature Communications
Volume
15
Article Number
5559
ISSN
IST-REx-ID

Cite this

Hajnal MA, Tran D, Szabó Z, et al. Shifts in attention drive context-dependent subspace encoding in anterior cingulate cortex in mice during decision making. Nature Communications. 2024;15. doi:10.1038/s41467-024-49845-2
Hajnal, M. A., Tran, D., Szabó, Z., Albert, A., Safaryan, K., Einstein, M., … Orbán, G. (2024). Shifts in attention drive context-dependent subspace encoding in anterior cingulate cortex in mice during decision making. Nature Communications. Springer Nature. https://doi.org/10.1038/s41467-024-49845-2
Hajnal, Márton Albert, Duy Tran, Zsombor Szabó, Andrea Albert, Karen Safaryan, Michael Einstein, Mauricio Vallejo Martelo, Pierre-Olivier Polack, Peyman Golshani, and Gergő Orbán. “Shifts in Attention Drive Context-Dependent Subspace Encoding in Anterior Cingulate Cortex in Mice during Decision Making.” Nature Communications. Springer Nature, 2024. https://doi.org/10.1038/s41467-024-49845-2.
M. A. Hajnal et al., “Shifts in attention drive context-dependent subspace encoding in anterior cingulate cortex in mice during decision making,” Nature Communications, vol. 15. Springer Nature, 2024.
Hajnal MA, Tran D, Szabó Z, Albert A, Safaryan K, Einstein M, Vallejo Martelo M, Polack P-O, Golshani P, Orbán G. 2024. Shifts in attention drive context-dependent subspace encoding in anterior cingulate cortex in mice during decision making. Nature Communications. 15, 5559.
Hajnal, Márton Albert, et al. “Shifts in Attention Drive Context-Dependent Subspace Encoding in Anterior Cingulate Cortex in Mice during Decision Making.” Nature Communications, vol. 15, 5559, Springer Nature, 2024, doi:10.1038/s41467-024-49845-2.
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