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Widespread temporal coding of cognitive control in the human prefrontal cortex.

Elliot H Smith | Guillermo Horga | Mark J Yates | Charles B Mikell | Garrett P Banks | Yagna J Pathak | Catherine A Schevon | Guy M McKhann | Benjamin Y Hayden | Matthew M Botvinick | Sameer A Sheth
Nature neuroscience | 2019

When making decisions we often face the need to adjudicate between conflicting strategies or courses of action. Our ability to understand the neuronal processes underlying conflict processing is limited on the one hand by the spatiotemporal resolution of functional MRI and, on the other hand, by imperfect cross-species homologies in animal model systems. Here we examine the responses of single neurons and local field potentials in human neurosurgical patients in two prefrontal regions critical to controlled decision-making, the dorsal anterior cingulate cortex (dACC) and dorsolateral prefrontal cortex (dlPFC). While we observe typical modest conflict-related firing rate effects, we find a widespread effect of conflict on spike-phase coupling in the dACC and on driving spike-field coherence in the dlPFC. These results support the hypothesis that a cross-areal rhythmic neuronal coordination is intrinsic to cognitive control in response to conflict, and provide new evidence to support the hypothesis that conflict processing involves modulation of the dlPFC by the dACC.

Pubmed ID: 31570859

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Associated grants

  • Agency: NIMH NIH HHS, United States
    Id: R01 MH106700
  • Agency: NIDA NIH HHS, United States
    Id: R01 DA038615
  • Agency: NINDS NIH HHS, United States
    Id: K12 NS080223
  • Agency: NIH HHS, United States
    Id: S10 OD018211
  • Agency: NINDS NIH HHS, United States
    Id: R01 NS084142

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Psychophysics Toolbox (tool)

RRID:SCR_002881

A free set of Matlab and GNU/Octave functions for vision research. It makes it easy to synthesize and show accurately controlled visual and auditory stimuli and interact with the observer.

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