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High precision magnetoencephalography reveals increased right-inferior frontal gyrus beta power during response conflict

2022-04-26

Abstract excerpt

Flexibility of behavior and the ability to rapidly switch actions is critical for adaptive living in humans. It is well established that the right-inferior frontal gyrus (R-IFG) is recruited during outright action-stopping, relating to increased beta (12-30 Hz) power. Additionally, pre-supplementary motor area (pre-SMA) is plausibly recruited during response conflict/switching, relating to increased theta (4-8 Hz)...

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Literature Corpus work
a9ced652-5670-5bac-a677-cc60458e4e6d
DOI
10.1101/2022.04.25.489434
Open publication

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High precision magnetoencephalography reveals increased right-inferior frontal gyrus beta power during response conflictDOI 10.1101/2022.04.25.489434
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