Title :
Directed Differential Connectivity Graph of Interictal Epileptiform Discharges
Author :
Amini, L. ; Jutten, C. ; Achard, S. ; David, O. ; Soltanian-Zadeh, H. ; Hossein-Zadeh, G.A. ; Kahane, P. ; Minotti, L. ; Vercueil, L.
Author_Institution :
GIPSA-Lab., Univ. of Grenoble, Grenoble, France
fDate :
4/1/2011 12:00:00 AM
Abstract :
In this paper, we study temporal couplings between interictal events of spatially remote regions in order to localize the leading epileptic regions from intracerebral EEG (iEEG). We aim to assess whether quantitative epileptic graph analysis during interictal period may be helpful to predict the seizure onset zone of ictal iEEG. Using wavelet transform, cross-correlation coefficient, and multiple hypothesis test, we propose a differential connectivity graph (DCG) to represent the connections that change significantly between epileptic and nonepileptic states as defined by the interictal events. Post-processings based on mutual information and multiobjective optimization are proposed to localize the leading epileptic regions through DCG. The suggested approach is applied on iEEG recordings of five patients suffering from focal epilepsy. Quantitative comparisons of the proposed epileptic regions within ictal onset zones detected by visual inspection and using electrically stimulated seizures, reveal good performance of the present method.
Keywords :
electroencephalography; medical disorders; medical signal processing; neurophysiology; wavelet transforms; cross-correlation coefficient; directed differential connectivity graph; electrically stimulated seizures; focal epilepsy; ictal iEEG; interictal epileptiform discharges; interictal period; intracerebral EEG; leading epileptic regions; multiple hypothesis test; quantitative epileptic graph analysis; seizure onset zone; wavelet transform; Couplings; Discrete wavelet transforms; Testing; Time frequency analysis; Epilepsy; functional connectivity graph; intracerebral EEG (iEEG); permutation-based multiple hypothesis test; wavelet cross-correlation coefficient; Action Potentials; Brain; Brain Mapping; Computer Simulation; Diagnosis, Computer-Assisted; Electrocardiography; Humans; Models, Neurological; Nerve Net; Neural Pathways; Wavelet Analysis;
Journal_Title :
Biomedical Engineering, IEEE Transactions on
DOI :
10.1109/TBME.2010.2099227