Agranular frontal cortical microcircuit underlying cognitive control in macaques

Front Neural Circuits. 2024 Mar 27:18:1389110. doi: 10.3389/fncir.2024.1389110. eCollection 2024.

Abstract

The error-related negativity and an N2-component recorded over medial frontal cortex index core functions of cognitive control. While they are known to originate from agranular frontal areas, the underlying microcircuit mechanisms remain elusive. Most insights about microcircuit function have been derived from variations of the so-called canonical microcircuit model. These microcircuit architectures are based extensively on studies from granular sensory cortical areas in monkeys, cats, and rodents. However, evidence has shown striking cytoarchitectonic differences across species and differences in the functional relationships across cortical layers in agranular compared to granular sensory areas. In this minireview, we outline a tentative microcircuit model underlying cognitive control in the agranular frontal cortex of primates. The model incorporates the main GABAergic interneuron subclasses with specific laminar arrangements and target regions on pyramidal cells. We emphasize the role of layer 5 pyramidal cells in error and conflict detection. We offer several specific questions necessary for creating a specific intrinsic microcircuit model of the agranular frontal cortex.

Keywords: EEG biomarkers; agranular frontal cortex; cognitive control; macaques; microcircuit.

Publication types

  • Review
  • Research Support, N.I.H., Extramural
  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Cerebral Cortex
  • Cognition
  • Frontal Lobe* / physiology
  • Haplorhini
  • Interneurons
  • Macaca*
  • Primates
  • Pyramidal Cells