| Literature DB >> 32087426 |
Suhao Peng1, Bin Xuan2, Peng Li1.
Abstract
Cognitive control can reduce uncertainty, but few studies have investigated temporal dynamics of the flexible allocation of resources under varying levels of uncertainty. We used a revised majority function task with emotional faces and event-related potentials to investigate this process. The task incorporated different ratios of face orientation to quantify uncertainty. Participants performed slower in high uncertainty than in other levels. Under low uncertainty, participants showed greater amplitudes of frontal N200 and late frontal wave to neutral faces than fearful faces. Parietal P300 amplitudes decreased from low uncertainty to high uncertainty, and fearful faces elicited greater P300 amplitudes than neutral faces under all levels of uncertainty. These results suggest that emotion and uncertainty interacted in the frontal cortex during both early and late stages, while no interaction existed in the parietal cortex during the late stage. The interference of fearful faces is lessened by increasing cognitive control under high uncertainty in the frontal cortex, suggesting that humans possess the ability to flexibly allocate mental resources in the temporal domain. Our findings provide evidence to support the fronto-parietal network hypothesis of cognitive control in a novel perspective of uncertainty.Entities:
Keywords: Cognitive control; Event-related potential; Facial emotion; Majority Function Task; Uncertainty
Mesh:
Year: 2020 PMID: 32087426 DOI: 10.1016/j.bandc.2020.105550
Source DB: PubMed Journal: Brain Cogn ISSN: 0278-2626 Impact factor: 2.310