DocumentCode
863379
Title
Enhancement of phase clustering in the EEG/MEG gamma frequency band anticipates transitions to paroxysmal epileptiform activity in epileptic patients with known visual sensitivity
Author
Kalitzin, Stiliyan ; Parra, Jaime ; Velis, Demetrios N. ; Silva, F. H Lopes da
Author_Institution
Med. Phys. Dept., Dutch Epilepsy Clinics Found. (SEIN), Heemstede, Netherlands
Volume
49
Issue
11
fYear
2002
Firstpage
1279
Lastpage
1286
Abstract
A new analytical method for quantifying brain activity from magnetoelectroencephalogram (MEG) and electroencephalogram (EEG) recordings during periodic light stimulation is proposed. It consists in estimating the phase clustering of harmonically related frequency components of a subject´s MEG/EEG responses evoked by the light stimulation. The method was developed to test the hypothesis that changes in the dynamics of brain systems in the course of intermittent photic stimulation (IPS) may precede the transition to seizure activity in photosensitive patients. We assumed that such changes would be reflected in the phase of harmonic components of the evoked responses. Thus, we determined the phase clustering for different harmonic components of these MEG/EEG signals. We found that the patients who develop epileptiform discharges during IPS present an enhancement of the phase clustering index at the gamma frequency band, compared with that at the driving frequency. We introduce a quantity-relative phase clustering index (rPCI)-by means of which this enhancement can be quantified. We argue that this quantity reflects the degree of excitability of the underlying dynamical system and it can indicate presence of nonlinear dynamics. rPCI can be applied to detect transitions to epileptic seizure activity in patients with known sensitivity to IPS.
Keywords
electroencephalography; magnetoencephalography; medical signal processing; neurophysiology; nonlinear dynamical systems; pattern clustering; signal classification; bifurcation; brain activity; clustering index; electroencephalogram; gamma frequency band; harmonically related frequency components; intermittent photic stimulation; magnetoelectroencephalogram; nonlinear dynamics; paroxysmal epileptiform activity; pathophysiology; periodic light stimulation; phase clustering; seizure anticipation; synchrony; transition to seizure activity; Biological neural networks; Brain; Electroencephalography; Epilepsy; Frequency estimation; Frequency synchronization; Magnetic analysis; Nonlinear dynamical systems; Phase estimation; System testing; Brain Mapping; Cluster Analysis; Diagnosis, Computer-Assisted; Electroencephalography; Epilepsy; Epilepsy, Reflex; Evoked Potentials, Visual; Humans; Magnetoencephalography; Models, Neurological; Models, Statistical; Quality Control; Reference Values; Sensitivity and Specificity; Severity of Illness Index; Signal Processing, Computer-Assisted;
fLanguage
English
Journal_Title
Biomedical Engineering, IEEE Transactions on
Publisher
ieee
ISSN
0018-9294
Type
jour
DOI
10.1109/TBME.2002.804593
Filename
1046936
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