bioRxiv · 10.1101/2021.03.31.437940
Attention improves information flow between neuronal populations without changing the communication subspace
Abstract
Visual attention allows observers to flexibly use or ignore visual information, suggesting that information can be flexibly routed between visual cortex and neurons involved in decision-making. We investigated the neural substrate of flexible information routing by analyzing the activity of populations of visual neurons in the medial temporal area (MT) and oculomotor neurons in the superior colliculus (SC) while rhesus monkeys switched spatial attention. We demonstrated that attention increases the efficacy of visuomotor communication: trial-to-trial variability of the population of SC neurons was better predicted by the activity of MT neurons (and vice versa) when attention was directed toward their joint receptive fields. Surprisingly, this improvement in prediction was not explained or accompanied by changes in the dimensionality of the shared subspace or in local or shared pairwise noise correlations. These results suggest a mechanism by which visual attention can affect perceptual decision-making without altering local neuronal representations.
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Srinath, R., Ruff, D. A., Cohen, M. R.. 2021-03-31. Attention improves information flow between neuronal populations without changing the communication subspace. https://doi.org/10.1101/2021.03.31.437940
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