Σφακιανάκης Αλέξανδρος
ΩτοΡινοΛαρυγγολόγος
Αναπαύσεως 5 Άγιος Νικόλαος
Κρήτη 72100
00302841026182
00306932607174
alsfakia@gmail.com

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Δευτέρα 30 Ιανουαρίου 2017

Magnetoencephalography with temporal spread imaging to visualize propagation of epileptic activity

Publication date: Available online 30 January 2017
Source:Clinical Neurophysiology
Author(s): Sumiya Shibata, Masao Matsuhashi, Takeharu Kunieda, Yukihiro Yamao, Rika Inano, Takayuki Kikuchi, Hisaji Imamura, Shigetoshi Takaya, Riki Matsumoto, Akio Ikeda, Ryosuke Takahashi, Tatsuya Mima, Hidenao Fukuyama, Nobuhiro Mikuni, Susumu Miyamoto
ObjectiveWe describe temporal spread imaging (TSI) that can identify the spatiotemporal pattern of epileptic activity using Magnetoencephalography (MEG).MethodsA three-dimensional grid of voxels covering the brain is created. The array-gain minimum-variance spatial filter is applied to an interictal spike to estimate the magnitude of the source and the time (Ta) when the magnitude exceeds a predefined threshold at each voxel. This calculation is performed through all spikes. Each voxel has the mean Ta (<Ta>) and spike number (Nsp), which is the number of spikes whose source exceeds the threshold. Then, a random resampling method is used to determine the cutoff value of Nsp for the statistically reproducible pattern of the activity. Finally, all the voxels where the source exceeds the threshold reproducibly shown on the MRI with a color scale representing <Ta>.ResultsFour patients with intractable mesial temporal lobe epilepsy (MTLE) were analyzed. In three patients, the common pattern of the overlap between the propagation and the hypometabolism shown by fluorodeoxyglucose-positron emission tomography (FDG-PET) was identified.ConclusionsTSI can visualize statistically reproducible patterns of the temporal and spatial spread of epileptic activity.SignificanceTSI can assess the statistical significance of the spatiotemporal pattern based on its reproducibility.



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