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使用植入人脑的源进行脑磁图(MEG)与脑电图(EEG)定位测试。

MEG versus EEG localization test using implanted sources in the human brain.

作者信息

Cohen D, Cuffin B N, Yunokuchi K, Maniewski R, Purcell C, Cosgrove G R, Ives J, Kennedy J G, Schomer D L

机构信息

Francis Bitter National Magnet Laboratory, Massachusetts Institute of Technology, Cambridge 02139.

出版信息

Ann Neurol. 1990 Dec;28(6):811-7. doi: 10.1002/ana.410280613.

Abstract

It is believed that the magnetoencephalogram (MEG) localizes an electrical source in the brain to within several millimeters and is therefore more accurate than electroencephalogram (EEG) localization, reported as 20 mm. To test this belief, the localization accuracy of the MEG and EEG were directly compared. The signal source was a dipole at a known location in the brain; this was made by passing a weak current pulse simulating a neural signal through depth electrodes already implanted in patients for seizure monitoring. First, MEGs and EEGs from this dipole were measured at 16 places on the head. Then, computations were performed on the MEG and EEG data separately to determine the apparent MEG and EEG source locations. Finally, these were compared with the actual source location to determine the MEG and EEG localization errors. Measurements were made of four dipoles in each of three patients. After MEGs with weak signals were discounted, the MEG average error of localization was found to be 8 mm, which was worse than expected. The average EEG error was 10 mm, which was better than expected. These results suggest that the MEG offers no significant advantage over the EEG in localizing a focal source. However, this does not diminish other uses of the MEG.

摘要

据信,脑磁图(MEG)可将脑内电源定位至几毫米范围内,因此比脑电图(EEG)定位更准确,后者的定位精度据报道为20毫米。为验证这一观点,对MEG和EEG的定位准确性进行了直接比较。信号源是大脑中一个已知位置的偶极子;这是通过将模拟神经信号的微弱电流脉冲通过已植入患者体内用于癫痫监测的深度电极来实现的。首先,在头部的16个位置测量来自该偶极子的MEG和EEG。然后,分别对MEG和EEG数据进行计算,以确定MEG和EEG的表观源位置。最后,将这些位置与实际源位置进行比较,以确定MEG和EEG的定位误差。对三名患者中的每一名患者的四个偶极子进行了测量。在剔除信号微弱的MEG后,发现MEG的平均定位误差为8毫米,比预期的要差。EEG的平均误差为10毫米,比预期的要好。这些结果表明,在定位局灶性源方面,MEG相对于EEG没有显著优势。然而,这并不影响MEG的其他用途。

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