Abstract
Objective: The interictal epileptic discharges (IEDs) occurring in stereotactic EEG (SEEG) recordings are in general abundant compared to ictal discharges, but difficult to interpret due to complex underlying network interactions. A framework is developed to model these network interactions. Methods: To identify the synchronized neuronal activity underlying the IEDs, the variation in correlation over time of the SEEG signals is related to the occurrence of IEDs using the general linear model. The interdependency is assessed of the brain areas that reflect highly synchronized neural activity by applying independent component analysis, followed by cluster analysis of the spatial distributions of the independent components. The spatiotemporal interactions of the spike clusters reveal the leading or lagging of brain areas. Results: The analysis framework was evaluated for five successfully operated patients, showing that the spike cluster that was related to the MRI-visible brain lesions coincided with the seizure onset zone. The additional value of the framework was demonstrated for two more patients, who were MRI-negative and for whom surgery was not successful. Conclusions: A network approach is promising in case of complex epilepsies. Significance: Analysis of IEDs is considered a valuable addition to routine review of SEEG recordings, with the potential to increase the success rate of epilepsy surgery.
| Original language | English |
|---|---|
| Pages (from-to) | 1276-1290 |
| Number of pages | 15 |
| Journal | Clinical Neurophysiology |
| Volume | 129 |
| Issue number | 6 |
| DOIs | |
| Publication status | Published - 1 Jun 2018 |
Funding
Funding was received as part of the Devices for NeuroControl and NeuroRehabilitation (DeNeCor) project from the ENIAC Joint Undertaking (Grant No. 324257 ) and as part of the Advancing Smart Optical Imaging and Sensing for Health (ASTONISH) project from the ECSEL Joint Undertaking (Grant No. 692470 ). The work of Andrea Fuster is part of the research programme of the Foundation for Fundamental Research on Matter (FOM), which is financially supported by the Netherlands Organisation for Scientific Research (NWO). Appendix A
Keywords
- Analysis framework
- Epilepsy surgery
- Interictal epileptic discharges
- Spatiotemporal network interaction
- Stereo-electroencephalography
- Epilepsy/physiopathology
- Seizures/physiopathology
- Humans
- Middle Aged
- Male
- Electroencephalography
- Nerve Net/physiopathology
- Young Adult
- Adolescent
- Brain Mapping
- Signal Processing, Computer-Assisted
- Adult
- Female
- Models, Neurological
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