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用于电源成像的最佳参考电极选择

Optimal reference electrode selection for electric source imaging.

作者信息

Gençer N G, Williamson S J, Gueziec A, Hummel R

机构信息

Department of Physics and Center for Neural Science, New York University, New York 10003-1113, USA.

出版信息

Electroencephalogr Clin Neurophysiol. 1996 Aug;99(2):163-73. doi: 10.1016/0013-4694(96)95139-1.

Abstract

One goal of recording voltages on the scalp is to form images of electrical sources across the cerebral cortex (electric source imaging). In this study, an objective criterion is introduced for selecting the optimal location for the reference electrode to attain the maximum spatial resolution of the source image, for example as provided here by the truncated singular value decomposition pseudo-inverse solution. The head model features a realistic cortex within a 3-shell conductive sphere, and pyramidal cell activity is represented by 9104 normal current elements distributed across the cortical area. On the scalp, 234 electrodes provide the measurements with respect to a chosen reference electrode. The effects of the reference electrode when located at the mastoid, occipital pole, vertex or center of the head are analyzed by a singular value decomposition of the lead field matrices. Sensitivity to noise, and hence the spatial resolution, is found to depend on characteristics of the lead field matrix that are determined by the choice of the image source surface, electrode array and location of the reference electrode. Using a reference close to a source surface increases the sensitivity of the measurement system in identifying the nearby activity of low spatial frequency content. However, this feature is compromised by a reduction in spatial resolution for distant cortical areas due to noise in the measurements. A new performance measure, the image sensitivity map, is introduced to identify the cortical regions that provide peak image sensitivity. This measure may be exploited in designing the geometry of an electrode array and selecting the location of the reference electrode to follow the activity on a specific area of the cortical surface.

摘要

在头皮上记录电压的一个目标是形成大脑皮层上电活动源的图像(电活动源成像)。在本研究中,引入了一个客观标准,用于选择参考电极的最佳位置,以获得源图像的最大空间分辨率,例如这里通过截断奇异值分解伪逆解所提供的。头部模型的特点是在一个三层导电球体内有一个逼真的皮层,锥体细胞活动由分布在皮层区域的9104个正常电流元表示。在头皮上,234个电极相对于选定的参考电极进行测量。通过对导联场矩阵进行奇异值分解,分析了参考电极位于乳突、枕极、头顶或头部中心时的影响。发现对噪声的敏感度以及空间分辨率取决于导联场矩阵的特性,这些特性由图像源表面、电极阵列和参考电极的位置决定。使用靠近源表面的参考电极会提高测量系统识别低空间频率内容附近活动的敏感度。然而,由于测量中的噪声,远处皮层区域的空间分辨率降低,这一特性受到了影响。引入了一种新的性能指标——图像敏感度图,以识别提供峰值图像敏感度的皮层区域。在设计电极阵列的几何形状和选择参考电极的位置以跟踪皮层表面特定区域的活动时,可以利用这一指标。

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