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认知过程中离散脑区的激活序列:磁场断层扫描结果

Activation sequence of discrete brain areas during cognitive processes: results from magnetic field tomography.

作者信息

Ioannides A A, Fenwick P B, Lumsden J, Liu M J, Bamidis P D, Squires K C, Lawson D, Fenton G W

机构信息

Open University, Department of Physics, Milton Keynes, UK.

出版信息

Electroencephalogr Clin Neurophysiol. 1994 Nov;91(5):399-402. doi: 10.1016/0013-4694(94)90125-2.

Abstract

Magnetic field tomography is a technique for extracting 3-dimensional estimates of current density in the brain, from non-contact, non-invasive measurements of the magnetic field generated by the brain. It allows visualisation of both cortical and subcortical focal activation patterns at millisecond intervals, and the relative time difference between active cortical areas. We have used this technique to study the activation history of discrete brain regions associated with the preparation for, initiation and inhibition of movement, and movement itself in a CNV paradigm. The strongest focal activities are found within well defined cortical regions, namely the auditory (A1), sensorimotor (SM1), medial parietal area (MPA) and anterior supplementary motor area (SMA). For the movement condition, activation history differs for the warning stimulus and the stimulus initiating movement.

摘要

磁场断层扫描是一种从大脑产生的磁场的非接触、非侵入性测量中提取大脑电流密度三维估计值的技术。它允许以毫秒为间隔可视化皮质和皮质下焦点激活模式,以及活跃皮质区域之间的相对时间差。我们已经使用这种技术来研究在CNV范式中与运动准备、启动和抑制以及运动本身相关的离散脑区的激活历史。最强的焦点活动出现在明确界定的皮质区域内,即听觉区(A1)、感觉运动区(SM1)、内侧顶叶区(MPA)和前辅助运动区(SMA)。对于运动条件,警告刺激和启动运动的刺激的激活历史有所不同。

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