IEEE Trans Biomed Eng. 2014 Mar;61(3):680-93. doi: 10.1109/TBME.2013.2286394. Epub 2013 Oct 18.
This study aimed to develop a time-frequency method for measuring directional interactions over time and frequency from scalp-recorded electroencephalographic (EEG) signals in a way that is less affected by volume conduction and amplitude scaling. We modified the time-varying generalized partial directed coherence (tv-gPDC) method, by orthogonalization of the strictly causal multivariate autoregressive model coefficients, to minimize the effect of mutual sources. The novel measure, generalized orthogonalized PDC (gOPDC), was tested first using two simulated models with feature dimensions relevant to EEG activities. We then used the method for assessing event-related directional information flow from flash-evoked responses in neonatal EEG. For testing statistical significance of the findings, we followed a thresholding procedure driven by baseline periods in the same EEG activity. The results suggest that the gOPDC method 1) is able to remove common components akin to volume conduction effect in the scalp EEG, 2) handles the potential challenge with different amplitude scaling within multichannel signals, and 3) can detect directed information flow within a subsecond time scale in nonstationary multichannel EEG datasets. This method holds promise for estimating directed interactions between scalp EEG channels that are commonly affected by the confounding impact of mutual cortical sources.
本研究旨在开发一种时频方法,以测量头皮记录的脑电图(EEG)信号随时间和频率的方向相互作用,这种方法受容积传导和幅度标度的影响较小。我们通过对严格因果多变量自回归模型系数进行正交化,对时变广义部分定向相干(tv-gPDC)方法进行了修改,以最小化源之间的相互影响。该新方法,广义正交化 PDC(gOPDC),首先使用与 EEG 活动相关的特征维度的两个模拟模型进行了测试。然后,我们使用该方法评估了新生儿 EEG 中闪光诱发反应的事件相关方向信息流。为了测试发现的统计显著性,我们遵循了一种由同一 EEG 活动中的基线期驱动的阈值处理程序。结果表明,gOPDC 方法 1)能够去除头皮 EEG 中类似于容积传导效应的常见分量,2)处理多通道信号中不同幅度标度的潜在挑战,3)能够检测非平稳多通道 EEG 数据集中亚秒级的定向信息流。该方法有望估计头皮 EEG 通道之间的定向相互作用,这些通道通常受到相互皮质源的混杂影响。