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首页> 外文期刊>Magnetics, IEEE Transactions on >EEG Inverse Problem Solution Using a Selection Procedure on a High Number of Electrodes With Minimal Influence of Conductivity
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EEG Inverse Problem Solution Using a Selection Procedure on a High Number of Electrodes With Minimal Influence of Conductivity

机译:使用选择过程在大量电极上以导电率影响最小的方法进行脑电逆问题求解

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摘要

The uncertain conductivity value of skull and brain tissue influences the accuracy of the electroencephalogram (EEG) inverse problem solution. Indeed, when the assumed conductivity in the numerical procedure is different from the actual conductivity then a source localization error is introduced. When using traditional least-squares minimization methods, the number of electrodes in the EEG cap does not influence the spatial resolution. A recently developed reduced conductivity dependence (RCD) methodology, based on the selection of electrodes, is able to increase the spatial resolution of the EEG inverse problem. This paper presents the implications of the RCD method when using a large number of electrodes in the EEG cap on the spatial resolution of the EEG inverse solutions. We show by means of numerical experiments that in contrast to traditional methods, the RCD method enables to increase the spatial resolution. The computations show that the EEG hardware should be modified with as large as possible electrodes.
机译:头骨和脑组织的不确定电导率值会影响脑电图(EEG)反问题解决方案的准确性。实际上,当数值过程中假定的电导率与实际电导率不同时,就会引入源定位误差。当使用传统的最小二乘最小化方法时,EEG帽中的电极数量不会影响空间分辨率。基于电极的选择,最近开发的降低电导率依赖性(RCD)方法能够提高EEG反问题的空间分辨率。本文介绍了在EEG帽中使用大量电极时RCD方法对EEG反解的空间分辨率的影响。我们通过数值实验表明,与传统方法相比,RCD方法能够提高空间分辨率。计算表明,应使用尽可能大的电极修改EEG硬件。

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