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[使用与磁共振成像(MR)相连的头盔式脑磁图(MEG)系统进行听觉诱发磁场的全脑测量]

[Whole head measurement of auditory evoked magnetic field using a MR-linked helmet shaped MEG system].

作者信息

Nakasato N, Seki K, Kawamura T, Fujita S, Matani A, Fujiwara S, Yoshimoto T

机构信息

Department of Neurosurgery, Konan Hospital, Sendai, Japan.

出版信息

No To Shinkei. 1994 Jul;46(7):632-7.

PMID:7946618
Abstract

Authors compared MR anatomy and magneto-encephalographic (MEG) functional methods in locating auditory cortex in 20 normal volunteers and 56 patients with intracranial structural lesions. Auditory evoked response was measured over the entire head, using a helmet shaped 64 channel MEG system. In each subject, three dimensional MR image was obtained with identical coordinate system of MEG. Best fit sphere to each subject's head was calculated from MRI data. Signal source of auditory evoked MEG was estimated using a two dipole model in the best fit sphere. Position and orientation of dipoles were superimposed on each subject's MRI. Both left and right dipolar patterns appeared about 100 ms after unilateral auditory stimuli (N100m) in 19 normal subjects and 47 patients. These dipolar patterns overlap each other across the midline. A two dipole model successfully localized bilateral N100m dipoles in the upper surface of superior temporal planes. N100m response was missing unilaterally in 1 normal subjects and 9 patients inspite of normal audiometry findings, suggesting sub-clinical auditory dysfunction. The MR-linked whole head MEG is a non-invasive tool to localize source of auditory evoked N100m response even in the case with intracranial structural lesions.

摘要

作者比较了磁共振成像(MR)解剖学方法和脑磁图(MEG)功能方法在20名正常志愿者和56名颅内结构病变患者中定位听觉皮层的情况。使用头盔形状的64通道MEG系统在整个头部测量听觉诱发电位。在每个受试者中,以与MEG相同的坐标系获取三维MR图像。根据MRI数据计算每个受试者头部的最佳拟合球体。在最佳拟合球体中使用双偶极子模型估计听觉诱发MEG的信号源。偶极子的位置和方向叠加在每个受试者的MRI上。在19名正常受试者和47名患者中,单侧听觉刺激后约100毫秒出现左右偶极子模式(N100m)。这些偶极子模式在中线处相互重叠。双偶极子模型成功地在上颞叶平面的上表面定位了双侧N100m偶极子。尽管听力测定结果正常,但1名正常受试者和9名患者单侧N100m反应缺失,提示亚临床听觉功能障碍。与MR相关的全脑MEG是一种非侵入性工具,即使在颅内结构病变的情况下也能定位听觉诱发N100m反应的来源。

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