DocumentCode
3128410
Title
Time-significant Wavelet Coherence for the Evaluation of Schizophrenic Brain Activity using a Graph theory approach
Author
Sakkalis, Vangelis ; Oikonomou, Theofanis ; Pachou, Ellie ; Tollis, Ioannis ; Micheloyannis, Sifis ; Zervakis, Michalis
Author_Institution
Dept. of Electron. & Comput. Eng., Crete Univ., Heraklion
fYear
2006
fDate
Aug. 30 2006-Sept. 3 2006
Firstpage
4265
Lastpage
4268
Abstract
Among the various frameworks in which electroencephalographic (EEG) signal synchronization has been traditionally formulated, the most widely studied and used is the coherence that is entirely based on frequency analysis. However, at present time it is possible to capture information about the temporal profile of coherence, which is particularly helpful in studying non-stationary time-varying brain dynamics, like the wavelet coherence (WC). In this paper we propose a new approach of studying brain synchronization dynamics by extending the use of WC to include certain statistically significant (in terms of signal coherence) time segments, to study and characterize any disturbances present in the functional connectivity network of schizophrenia patients. Graph theoretical measures and visualization provide the tools to study the "disconnection syndrome" as proposed for schizophrenia. Specifically, we analyzed multichannel EEG data from twenty stabilized patients with schizophrenia and controls in an experiment of working memory (WM) using the gamma band (i.e., the EEG frequency of ca. 40 Hz), which is activated during the connecting activity (i.e., the "binding" of the neurons). The results are in accordance with the disturbance of connections between the neurons giving additional information related to the localization of most prominent disconnection
Keywords
cognition; electroencephalography; graph theory; medical signal processing; neurophysiology; synchronisation; wavelet transforms; disconnection syndrome; electroencephalographic signal synchronization; functional connectivity network; graph theory approach; multichannel EEG data; neurons; nonstationary time-varying brain dynamics; schizophrenic brain activity; signal coherence; wavelet coherence; working memory; Brain; Coherence; Data analysis; Data visualization; Electroencephalography; Frequency synchronization; Graph theory; Neurons; Optical wavelength conversion; Signal analysis;
fLanguage
English
Publisher
ieee
Conference_Titel
Engineering in Medicine and Biology Society, 2006. EMBS '06. 28th Annual International Conference of the IEEE
Conference_Location
New York, NY
ISSN
1557-170X
Print_ISBN
1-4244-0032-5
Electronic_ISBN
1557-170X
Type
conf
DOI
10.1109/IEMBS.2006.260680
Filename
4462743
Link To Document