首页> 外文会议>Engineering in Medicine and Biology Society, 1997. Proceedings of the 19th Annual International Conference of the IEEE >Model studies of spreading electrical activities in the brain on MEG/EEG inverse problem
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Model studies of spreading electrical activities in the brain on MEG/EEG inverse problem

机译:MEG / EEG反问题在大脑中传播电活动的模型研究

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Using magnetoencephalogram (MEG) and electroencephalogram (EEG) the source estimation is performed in recent research. We simulated the MEG source estimation (inverse problem) for the purpose of finding the spread and the amplitude of neural activities. We proposed the hexagonal spreading dipole (HSD) model to briefly describe the source's spread. Inverse simulation indicates that the source localization using the HSD model can be as accurate as the localization with a single dipole model. As the spread and the amplitude are associated with each other, it is effective to combine their information. However, it is significantly difficult to find the orientation of the HSD model, because the radial component of the neural source has few magnetic fields. The information of a cerebral cortex shape or EEG signal with a radial component should be applied to the source estimation algorithm.
机译:在最近的研究中,使用脑磁图(MEG)和脑电图(EEG)进行了源估计。我们模拟了MEG源估计(反问题),目的是发现神经活动的扩散和幅度。我们提出了六角形扩散偶极子(HSD)模型来简要描述源的扩散。逆向仿真表明,使用HSD模型进行的源定位可以与使用单个偶极子模型进行的定位一样精确。由于扩展和幅度相互关联,因此有效地组合它们的信息。但是,由于神经源的径向分量几乎没有磁场,因此很难找到HSD模型的方向。具有径向分量的大脑皮质形状或EEG信号的信息应应用于源估计算法。

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