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  4. Altered resting-state EEG complexity in children with tourette syndrome: A preliminary study
 
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Altered resting-state EEG complexity in children with tourette syndrome: A preliminary study

Journal
Neuropsychology
Journal Volume
31
Journal Issue
4
Pages
395-402
Date Issued
2017
Author(s)
WEN-CHIN WENG  
Chang, C.-F.
LEE-CHIN WONG  
JUI-HSIANG LIN 
WANG-TSO LEE  
Shieh, J.-S.
DOI
10.1037/neu0000363
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85047289777&doi=10.1037%2fneu0000363&partnerID=40&md5=7b2f496900693939e2fdbe04b710fe22
https://scholars.lib.ntu.edu.tw/handle/123456789/527362
Abstract
Objective: Tourette syndrome is a developmental neuropsychiatric disorder in children, and abnormal corticobasal ganglion connectivity is implied for the pathophysiology. Multiscale entropy, an entropy-based method to measure dynamic complexity at multiple temporal scales, is helpful to disclose the information of brain connectivity. This preliminary study investigated the complexity of resting-state electroencephalogram signals using multiscale entropy in children with Tourette syndrome. Method: Resting-state electroencephalographic (EEG) signals were analyzed by sample entropy and multiscale entropy methods in 10 children with Tourette syndrome and 10 healthy gender- and age-matched controls. Results: Except for the Fp2 channel, the complexity index values in all channels were reduced in children with Tourette syndrome compared with those in normal controls. A statistically significant reduction in EEG complexity was found in the bilateral central, parietal, occipital, and left temporal regions, indicating disturbed brain connectivity in Tourette syndrome. Although there was no difference of complexity in the higher frequency spectra, there was a statistically significant difference of complexity in lower frequency in F3 channel, pointing to the importance of examining a range of time scales in exploring EEG signals. Conclusions: Our preliminary study demonstrated that EEG complexity was significantly lower in children with Tourette syndrome than in normal controls. This difference may serve as a marker of disturbed brain connectivity in such individuals and suggests that further clinical studies are warranted. ? 2017 American Psychological Association.
SDGs

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Other Subjects
Article; brain region; child; clinical article; controlled study; electroencephalogram; entropy; female; functional connectivity; Gilles de la Tourette syndrome; human; male; multiscale entropy; resting state network; brain cortex; electroencephalography; Gilles de la Tourette syndrome; hemispheric dominance; pathophysiology; retrospective study; Cerebral Cortex; Child; Electroencephalography; Entropy; Female; Functional Laterality; Humans; Male; Retrospective Studies; Tourette Syndrome
Publisher
American Psychological Association Inc.
Type
journal article

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