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高分辨率脑电图电源定位的可重复性和有效性

Reproducibility and validity of electric source localisation with high-resolution electroencephalography.

作者信息

Kristeva-Feige R, Grimm C, Huppertz H J, Otte M, Schreiber A, Jäger D, Feige B, Büchert M, Hennig J, Mergner T, Lücking C H

机构信息

Neurologic University Clinic, Neurocentre, Freiburg, Germany.

出版信息

Electroencephalogr Clin Neurophysiol. 1997 Dec;103(6):652-60. doi: 10.1016/s0013-4694(97)00085-0.

Abstract

The present study investigates the reproducibility and validity of the EEG source localisation of somatosensory evoked potentials (SEPs) using high-resolution EEG (61 scalp electrodes) and a source reconstruction on the basis of the individual brain morphology as obtained from magnetic resonance images (MRIs). The somatosensory evoked potentials (SEPs) to electrical stimulation of the right median nerve were repeatedly collected from the scalp of one healthy subject in 9 replications run on 9 different days. The source reconstruction for the 19 ms SEP component was performed by using a single moving dipole model as a source model. Two different head models were used: a spherical 3 shell model and a more realistically shaped 3 compartment model computed using the boundary element method (BEM). The source locations of the 19 ms SEP component were found to be highly reproducible using both head models: the mean standard deviation of the dipole locations was found to be 2.6 mm for the 3 shell model and 4 mm for the more realistically shaped head model. By projection into the individual MRI, the dipoles resulting from either head models were found to be located within the postcentral gyrus. The electric source locations were consistent with the maximum of the task-specific changes seen in a functional magnetic resonance imaging (fMRI) experiment when using the same somatosensory stimulation protocol.

摘要

本研究使用高分辨率脑电图(61个头皮电极)以及基于从磁共振图像(MRI)获得的个体脑形态进行的源重建,来研究体感诱发电位(SEP)的脑电图源定位的可重复性和有效性。在9个不同日期进行的9次重复实验中,从一名健康受试者的头皮上反复采集了右侧正中神经电刺激的体感诱发电位(SEP)。使用单移动偶极子模型作为源模型,对19毫秒SEP成分进行源重建。使用了两种不同的头部模型:一个球形三层模型和一个使用边界元法(BEM)计算的形状更逼真的三室模型。使用这两种头部模型均发现19毫秒SEP成分的源位置具有高度可重复性:对于三层模型,偶极子位置的平均标准差为2.6毫米,对于形状更逼真的头部模型为4毫米。通过投影到个体MRI中,发现由任一头部模型产生的偶极子位于中央后回内。当使用相同的体感刺激方案时,电源位置与功能磁共振成像(fMRI)实验中看到的任务特异性变化最大值一致。

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