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Reversed functional gradient in primate prefrontal cortex: Posterior dominance and frontopolar task-related deactivation.

Created on 18 Jul 2026

Authors

Kei Watanabe, Masayuki Hirata, Takafumi Suzuki

Published in

Science advances. Volume 12. Issue 29. Pages eaea1094. Jul 17, 2026. Epub Jul 17, 2026.

Abstract

The frontopolar cortex (FPC) is thought to coordinate the more posterior lateral prefrontal cortex (LPFC) during complex, nonroutine behaviors through high-level functions such as management of multiple goals, exploration, and self-generated decision-making. However, direct neurophysiological comparisons with other prefrontal regions are lacking, leaving the FPC's putative dominance untested. Contrary to this view, our comparison of neuronal activity across the full anteroposterior LPFC in macaques during six distinct tasks probing these functions revealed a posterior-to-mid LPFC dominance, with resource-allocation signals, novelty- and reward-related learning signals, and modality-invariant decision-monitoring signals all showing a common posterior bias. In contrast, regardless of the task demands, FPC exhibited inflexible encoding of just-executed actions and consistent task-related deactivation resembling default-mode network activity. We identified a turning point in this graded posterior-to-anterior transition from task-positive to task-negative regions around the border between the anterior and middle thirds of the LPFC. These findings challenge the prevailing notion that the LPFC is anterior dominant across primate species and provide evolutionary constraints on theories of human prefrontal organization.

PMID:
42467768
Bibliographic data and abstract were imported from PubMed on 18 Jul 2026.

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