Article

Dynamic imaging of ictal oscillations using non-invasive high-resolution EEG.

Department of Biomedical Engineering, University of Minnesota, Minneapolis, MN, USA.
NeuroImage (impact factor: 5.89). 03/2011; 56(4):1908-17. DOI:10.1016/j.neuroimage.2011.03.043 pp.1908-17
Source: PubMed

ABSTRACT Scalp electroencephalography (EEG) has been established as a major component of the pre-surgical evaluation for epilepsy surgery. However, its ability to localize seizure onset zones (SOZ) has been significantly restricted by its low spatial resolution and indirect correlation with underlying brain activities. Here we report a novel non-invasive dynamic seizure imaging (DSI) approach based upon high-density EEG recordings. This novel approach was particularly designed to image the dynamic changes of ictal rhythmic discharges that evolve through time, space and frequency. This method was evaluated in a group of 8 epilepsy patients and results were rigorously validated using intracranial EEG (iEEG) (n=3) and surgical outcome (n=7). The DSI localized the ictal activity in concordance with surgically resected zones and ictal iEEG recordings in the cohort of patients. The present promising results support the ability to precisely and accurately image dynamic seizure activity from non-invasive measurements. The successful establishment of such a non-invasive seizure imaging modality for surgical evaluation will have a significant impact in the management of medically intractable epilepsy.

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Keywords

8 epilepsy patients
 
DSI localized
 
dynamic changes
 
epilepsy surgery
 
high-density EEG recordings
 
ictal iEEG recordings
 
ictal rhythmic discharges
 
image dynamic seizure activity
 
indirect correlation
 
localize seizure onset zones
 
low spatial resolution
 
major component
 
medically intractable epilepsy
 
non-invasive measurements
 
non-invasive seizure imaging modality
 
novel non-invasive dynamic seizure imaging
 
present promising results support
 
significant impact
 
successful establishment
 
surgically resected zones
 

Lin Yang