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Cited 8 time in webofscience Cited 10 time in scopus
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Brain Areas Responsible for Vigilance: An EEG Source Imaging Study

Authors
Kim, Jung-HoonKim, Do-WonIm, Chang-Hwan
Issue Date
May-2017
Publisher
SPRINGER
Keywords
Vigilance; Sustained attention; Electroencephalography; Source imaging; D2 test of attention
Citation
BRAIN TOPOGRAPHY, v.30, no.3, pp.343 - 351
Indexed
SCIE
SCOPUS
Journal Title
BRAIN TOPOGRAPHY
Volume
30
Number
3
Start Page
343
End Page
351
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/20345
DOI
10.1007/s10548-016-0540-0
ISSN
0896-0267
Abstract
Vigilance, sometimes referred to as sustained attention, is an important type of human attention as it is closely associated with cognitive activities required in various daily-life situations. Although many researchers have investigated which brain areas control the maintenance of vigilance, findings have been inconsistent. We hypothesized that this inconsistency might be due to the use of different experimental paradigms in the various studies. We found that most of the previous studies used paradigms that included specific cognitive tasks requiring a high cognitive load, which could complicate identification of brain areas associated only with vigilance. To minimize the influence of cognitive processes other than vigilance on the analysis results, we adopted the d2-test of attention, which is a well-known neuropsychological test of attention that does not require high cognitive load, and searched for brain areas at which EEG source activities were temporally correlated with fluctuation of vigilance over a prolonged period of time. EEG experiments conducted with 31 young adults showed that left prefrontal cortex activity was significantly correlated with vigilance variation in the delta, beta1, beta2, and gamma frequency bands, but not the theta and alpha frequency bands. Our study results suggest that the left prefrontal cortex plays a key role in vigilance modulation, and can therefore be used to monitor individual vigilance changes over time or serve as a potential target of noninvasive brain stimulation.
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