High frequency oscillations (HFOs, 80–500 Hz) in invasive EEG are a biomarker for the epileptic focus. Ripples (80–250 Hz) have also been identified in non-invasive MEG, yet detection is impeded by noise, their low occurrence rates, and the workload of visual analysis. We propose a method that identifies ripples in MEG through noise reduction, beamforming and automatic detection with minimal user effort. We analysed 15 min of presurgical resting-state interictal MEG data of 25 patients with epilepsy. The MEG signal-to-noise was improved by using a cross-validation signal space separation method, and by calculating ~ 2400 beamformer-based virtual sensors in the grey matter. Ripples in these sensors were automatically detected by an algorithm...
Objective: We studied ripples (80–250 Hz) simultaneously recorded in electroencephalography (EEG) an...
OBJECTIVE: High frequency oscillations (HFOs) and in particular fast ripples (FRs) in the post-rese...
Objective Surface EEG can show epileptiform ripples in people with focal epilepsy, but identificatio...
High frequency oscillations (HFOs, 80–500 Hz) in invasive EEG are a biomarker for the epileptic focu...
Objective. In epilepsy, high-frequency oscillations (HFOs) are expressively linked to the seizure on...
In patients with a focal source of epileptic seizures, epilepsy surgery can be a treatment option. T...
OBJECTIVE: High frequency oscillations (HFOs, >80Hz) are biomarkers for epileptogenic cortex in inva...
Epilepsy is a chronic neurological disorder characterized by seizures. Although most patients respon...
International audienceOBJECTIVE: We propose a new method for automatic detection of fast ripples (FR...
High frequency oscillations (HFOs) are a promising biomarker of epileptic tissue, but detection of t...
Objective: Technology for localizing epileptogenic brain regions plays a central role in surgical pl...
International audienceObjective: Technology for localizing epileptogenic brain regions plays a centr...
High frequency oscillations (HFOs) are a promising biomarker of epileptic tissues. Higher rates of H...
Objective: We studied ripples (80–250 Hz) simultaneously recorded in electroencephalography (EEG) an...
OBJECTIVE: High frequency oscillations (HFOs) and in particular fast ripples (FRs) in the post-rese...
Objective Surface EEG can show epileptiform ripples in people with focal epilepsy, but identificatio...
High frequency oscillations (HFOs, 80–500 Hz) in invasive EEG are a biomarker for the epileptic focu...
Objective. In epilepsy, high-frequency oscillations (HFOs) are expressively linked to the seizure on...
In patients with a focal source of epileptic seizures, epilepsy surgery can be a treatment option. T...
OBJECTIVE: High frequency oscillations (HFOs, >80Hz) are biomarkers for epileptogenic cortex in inva...
Epilepsy is a chronic neurological disorder characterized by seizures. Although most patients respon...
International audienceOBJECTIVE: We propose a new method for automatic detection of fast ripples (FR...
High frequency oscillations (HFOs) are a promising biomarker of epileptic tissue, but detection of t...
Objective: Technology for localizing epileptogenic brain regions plays a central role in surgical pl...
International audienceObjective: Technology for localizing epileptogenic brain regions plays a centr...
High frequency oscillations (HFOs) are a promising biomarker of epileptic tissues. Higher rates of H...
Objective: We studied ripples (80–250 Hz) simultaneously recorded in electroencephalography (EEG) an...
OBJECTIVE: High frequency oscillations (HFOs) and in particular fast ripples (FRs) in the post-rese...
Objective Surface EEG can show epileptiform ripples in people with focal epilepsy, but identificatio...