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Updated: Jan 31, 2026

Network Analysis of Foramen Ovale Electrode Recordings in Drug-resistant Temporal Lobe Epilepsy Patients
Published on: December 18, 2016
Resting state connectivity in neocortical epilepsy: The epilepsy network as a patient-specific biomarker
Alexandria C Marino1, Genevieve J Yang1, Evgeniya Tyrtova2
1Department of Neuroscience, Yale University, PO Box 208001, New Haven, CT 06520-8001, USA; Yale University School of Medicine, 333 Cedar St., New Haven, CT 06510, USA.
Objective:
Localization related epilepsy (LRE) is increasingly accepted as a network disorder. To better understand the network specific characteristics of LRE, we defined individual epilepsy networks and compared them across patients.
Methods:
The epilepsy network was defined in the slow cortical potential frequency band in 10 patients using intracranial EEG data obtained during interictal periods. Cortical regions were included in the epilepsy network if their connectivity pattern was similar to the connectivity pattern of the seizure onset electrode contact. Patients were subdivided into frontal, temporal, and posterior quadrant cohorts according to the anatomic location of seizure onset. Jaccard similarity was calculated within each cohort to assess for similarity of the epilepsy network between patients within each cohort.
Results:
All patients exhibited an epilepsy network in the slow cortical potential frequency band. The topographic distribution of this correlated network activity was found to be unique at the single subject level.
Conclusions:
The epilepsy network was unique at the single patient level, even between patients with similar seizure onset locations.
Significance:
We demonstrated that the epilepsy network is patient-specific. This is in keeping with our current understanding of brain networks and identifies the patient-specific epilepsy network as a possible biomarker in LRE.
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10:22Interictal High Frequency Oscillations Detected with Simultaneous Magnetoencephalography and Electroencephalography as Biomarker of Pediatric Epilepsy
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