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首页> 外文期刊>NeuroImage >Estimating true brain connectivity from EEG/MEG data invariant to linear and static transformations in sensor space
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Estimating true brain connectivity from EEG/MEG data invariant to linear and static transformations in sensor space

机译:估计从脑电图/脑电图数据不变到传感器空间中线性和静态转换的真实大脑连通性

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The imaginary part of coherency is a measure to investigate the synchronization of brain sources on the EEG/MEG sensor level, robust to artifacts of volume conduction meaning that independent sources cannot generate a significant result. It does not mean, however, that volume conduction is irrelevant when true interactions are present. Here, we analyze in detail the possibilities to construct measures of true brain interactions which are strictly invariant to linear spatial transformations of the sensor data. Specifically, such measures can be constructed from maximization of imaginary coherency in virtual channels, bivariate measures as a corrected variate of imaginary coherence, and global measures indicating the total interaction contained within a space or between two spaces. A complete theoretic framework on this question is provided for second order statistical moments. Relations to existing linear and nonlinear approaches are presented. We applied the methods to resting state EEG data, showing clear interactions at all bands, and to a combined measurement of EEG and MEG during rest condition and a finger tapping task. We found that MEG was capable of observing brain interactions which were not observable in the EEG data.
机译:相干的虚部是一种在EEG / MEG传感器水平上研究脑源同步性的措施,它对体积传导伪像具有鲁棒性,这意味着独立的源无法产生重要的结果。但是,这并不意味着当存在真正的相互作用时,体积传导是无关紧要的。在这里,我们详细分析了构建真正的大脑交互作用的措施的可能性,这些措施对于传感器数据的线性空间变换严格不变。具体地,可以从虚拟通道中的假想相干性的最大化,作为假想相干性的校正变量的二元测量值以及指示一个空间内或两个空间之间包含的总交互作用的整体测量值来构造这样的量度。针对二阶统计矩提供了有关该问题的完整理论框架。提出了与现有线性和非线性方法的关系。我们将这些方法应用于静止状态的EEG数据,显示了所有频段的清晰相互作用,并在静止状态和敲击任务期间对EEG和MEG进行了组合测量。我们发现,MEG能够观察到脑电图数据中无法观察到的大脑相互作用。

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