DocumentCode :
23992
Title :
Single-Trial EEG Classification Using Logistic Regression Based on Ensemble Synchronization
Author :
Prasad, Pradeep D. ; Halahalli, Harsha N. ; John, J.P. ; Majumdar, Kaushik K.
Author_Institution :
Syst. Sci. & Inf. Unit, Indian Stat. Inst., Bangalore, India
Volume :
18
Issue :
3
fYear :
2014
fDate :
May-14
Firstpage :
1074
Lastpage :
1080
Abstract :
In this paper, we propose an ensemble synchronization measure across all EEG channel pairs of a cluster based on Frobenius norm of the phase synchronization matrix, in a 0-1 scale enabling a direct comparison between clusters with different number of channels. Using this metric, we studied the intrahemispheric EEG synchronization in the lower gamma band (30-40 Hz) during 1229 single trials of an audio-visual integration cross modal task (CMT) recorded from five patients with schizophrenia and five healthy control subjects. Using ensemble synchronization measure and response latency of single trials recorded during the CMT as features for logistic regression, we could classify each single trial of EEG as belonging to a patient with schizophrenia or a healthy control subject with 73% accuracy, with an area under receiver operating characteristics curve of 0.83. We also propose a likelihood rating to denote the possibility of a subject belonging to the schizophrenia group.
Keywords :
audio-visual systems; electroencephalography; medical disorders; medical signal processing; regression analysis; signal classification; synchronisation; EEG channel pairs; Frobenius norm; area under receiver operating characteristics curve; audio-visual integration cross modal task; ensemble synchronization; gamma band; intrahemispheric EEG synchronization; likelihood rating; logistic regression; phase synchronization matrix; schizophrenia patient; single-trial EEG classification; Accuracy; Electroencephalography; Informatics; Synchronization; Training; Visualization; Cross modal task (CMT); Frobenius norm; Hilbert transform; logistic regression; multichannel measure; phase synchronization;
fLanguage :
English
Journal_Title :
Biomedical and Health Informatics, IEEE Journal of
Publisher :
ieee
ISSN :
2168-2194
Type :
jour
DOI :
10.1109/JBHI.2013.2289741
Filename :
6683039
Link To Document :
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