1.A Novel Visualization Method for Sleep Spindles Based on Source Localization of High Density EEG.
Soohyun LEE ; Seunghwan KIM ; Jee Hyun CHOI
Experimental Neurobiology 2017;26(6):362-368
Equivalent dipole source localization is a well-established approach to localizing the electrical activity in electroencephalogram (EEG). So far, source localization has been used primarily in localizing the epileptic source in human epileptic patients. Currently, source localization techniques have been applied to account for localizing epileptic source among the epileptic patients. Here, we present the first application of source localization in the field of sleep spindle in mouse brain. The spatial distribution of cortical potential was obtained by high density EEG and then the anterior and posterior sleep spindles were classified based on the K-mean clustering algorithm. To solve the forward problem, a realistic geometry brain model was produced based on boundary element method (BEM) using mouse MRI. Then, we applied four different source estimation algorithms (minimum norm, eLORETA, sLORETA, and LORETA) to estimate the spatial location of equivalent dipole source of sleep spindles. The estimated sources of anterior and posterior spindles were plotted in a cine-mode that revealed different topographic patterns of spindle propagation. The characterization of sleep spindles may be better be distinguished by our novel visualization method.
Animals
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Brain
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Electroencephalography*
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Humans
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Insulator Elements
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Magnetic Resonance Imaging
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Methods*
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Mice
2.EEG Source Imaging in Partial Epilepsy in Comparison with Presurgical Evaluation and Magnetoencephalography.
Chae Jung PARK ; Ji Hye SEO ; Daeyoung KIM ; Berdakh ABIBULLAEV ; Hyukchan KWON ; Yong Ho LEE ; Min Young KIM ; Kyung Min AN ; Kiwoong KIM ; Jeong Sik KIM ; Eun Yeon JOO ; Seung Bong HONG
Journal of Clinical Neurology 2015;11(4):319-330
BACKGROUND AND PURPOSE: The aim of this study was to determine the usefulness of three-dimensional (3D) scalp EEG source imaging (ESI) in partial epilepsy in comparison with the results of presurgical evaluation, magnetoencephalography (MEG), and electrocorticography (ECoG). METHODS: The epilepsy syndrome of 27 partial epilepsy patients was determined by presurgical evaluations. EEG recordings were made using 70 scalp electrodes, and the 3D coordinates of the electrodes were digitized. ESI images of individual and averaged spikes were analyzed by Curry software with a boundary element method. MEG and ECoG were performed in 23 and 9 patients, respectively. RESULTS: ESI and MEG source imaging (MSI) results were well concordant with the results of presurgical evaluations (in 96.3% and 100% cases for ESI and MSI, respectively) at the lobar level. However, there were no spikes in the MEG recordings of three patients. The ESI results were well concordant with MSI results in 90.0% of cases. Compared to ECoG, the ESI results tended to be localized deeper than the cortex, whereas the MSI results were generally localized on the cortical surface. ESI was well concordant with ECoG in 8 of 9 (88.9%) cases, and MSI was also well concordant with ECoG in 4 of 5 (80.0%) cases. The EEG single dipoles in one patient with mesial temporal lobe epilepsy were tightly clustered with the averaged dipole when a 3 Hz high-pass filter was used. CONCLUSIONS: The ESI results were well concordant with the results of the presurgical evaluation, MSI, and ECoG. The ESI analysis was found to be useful for localizing the seizure focus and is recommended for the presurgical evaluation of intractable epilepsy patients.
Electrodes
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Electroencephalography*
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Epilepsies, Partial*
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Epilepsy
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Epilepsy, Temporal Lobe
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Humans
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Insulator Elements
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Magnetoencephalography*
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Scalp
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Seizures
3.The P300 Source Localization in the Patients with Obsessive-Compulsive Disorder using the LORETA Imaging and SPM.
Sung Kun PARK ; Jung Seok CHOI ; Soh Young YU ; Bo Reom LEE ; Seung Suk KANG ; Kyu Sik ROH ; Tae Hyun HA ; Jun Soo KWON
Journal of the Korean Society of Biological Psychiatry 2003;10(2):168-176
OBJECTIVES: We investigated the characteristics of P300 generators in obsessive-compulsive disorder(OCD) patients by using voxel-based statistical parametric mapping of current density images. METHODS: P300 generators, produced by a rare target tone of 1500Hz under a frequent non-target tone of 1,000Hz, were measured in 15 right-handed OCD patients and 15 controls. Low Resolution Electromagnetic Tomography(LORETA), using a realistic head model of the boundary element method based on individual MRI, was applied to the 128-channel EEG. Statistical parametric mapping(SPM) was applied for the statistical analysis. RESULTS: We found that both groups had the mean current density of P300 in the parietal, temporal and prefrontal lobe. There was a trend for decreased current density in the prefrontal area in OCD patients. The statistical comparison showed current density increase in the supraparietal area, a statistically significant longer P300 latency and a trend for reduced P300 amplitude in OCD patients. CONCLUSION: It suggests that P300 source of both groups exists in multiple brain regions at the same time. And both groups had no statistically significant differences in the current density of P300 except for increased current density in the supraparietal area in OCD patients. But, considering the statistically significant longer P300 latency, a trend for reduced P300 amplitude and relative mean current density reduction in the prefrontal area in OCD patients, this study suggests that the frontal lobe may have a reduced normal inhibitory process in OCD patients.
Brain
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Electroencephalography
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Frontal Lobe
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Head
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Humans
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Insulator Elements
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Magnetic Resonance Imaging
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Magnets
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Obsessive-Compulsive Disorder*
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Rabeprazole