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The Influence of EEG References on the Analysis of Spatio-Temporal Interrelation Patterns

机译:脑电参考对时空相关性模式分析的影响

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摘要

The characterization of the functional network of the brain dynamics has become a prominent tool to illuminate novel aspects of brain functioning. Due to its excellent time resolution, such research is oftentimes based on electroencephalographic recordings (EEG). However, a particular EEG-reference might cause crucial distortions of the spatiotemporal interrelation pattern and may induce spurious correlations as well as diminish genuine interrelations originally present in the dataset. Here we investigate in which manner correlation patterns are affected by a chosen EEG reference. To this end we evaluate the influence of 7 popular reference schemes on artificial recordings derived from well controlled numerical test frameworks. In this respect we are not only interested in the deformation of spatial interrelations, but we test additionally in which way the time evolution of the functional network, estimated via some bi-variate interrelation measures, gets distorted. It turns out that the median reference as well as the global average show the best performance in most situations considered in the present study. However, if a collective brain dynamics is present, where most of the signals get correlated, these schemes may also cause crucial deformations of the functional network, such that the parallel use of different reference schemes seems advisable.
机译:大脑动力学功能网络的表征已成为阐明大脑功能新颖方面的重要工具。由于其出色的时间分辨率,此类研究通常基于脑电图记录(EEG)。但是,特定的EEG参考可能会引起时空相互关系模式的严重失真,并可能导致虚假相关以及减少最初出现在数据集中的真实相互关系。在这里,我们研究所选脑电图参考以何种方式影响相关模式。为此,我们评估了7种流行的参考方案对源自受控数值测试框架的人工记录的影响。在这方面,我们不仅对空间相关性的变形感兴趣,而且我们还额外测试了通过某些双变量相互关系测度估算的功能网络的时间演化是否失真。事实证明,在本研究中考虑的大多数情况下,中位数参考值和全球平均值显示出最佳性能。但是,如果存在集体大脑动力学,其中大多数信号都与之相关,则这些方案也可能导致功能网络发生严重变形,因此建议同时使用不同的参考方案。

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