Dynamic geometry remapping of neural activity within frontal and subcortical areas during decision-making

Dynamic geometry remapping of neural activity within frontal and subcortical areas during decision-making

Abstract

Abstract
Decision-making involves dynamic evaluation of competing options. Recording 16,495 neurons across nine frontal and subcortical areas in macaques revealed brain-wide fluctuations between encoding the attributes of available options. These dynamic representations track deliberation and scale with decision difficulty. Instead of binding attribute information of different options together, our analyses show that these representations are associated with dynamic area- and attribute-specific changes in neural geometry.
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