School of Psychological and Cognitive Sciences, Peking University, China; PKU-IDG/McGovern Institute for Brain Research, Peking University, China; Beijing Key Laboratory of Behavior and Mental Health, Peking University, China.
Department of Psychiatry, University of Texas Southwestern Medical Centre at Dallas, USA.
Dev Cogn Neurosci. 2022 Aug;56:101119. doi: 10.1016/j.dcn.2022.101119. Epub 2022 Jun 9.
There is a growing interest in using electroencephalography (EEG) and source modeling to investigate functional interactions among cortical processes, particularly when dealing with pediatric populations. This paper introduces two pipelines that have been recently used to conduct EEG FC analysis in the cortical source space. The analytic streams of these pipelines can be summarized into the following steps: 1) cortical source reconstruction of high-density EEG data using realistic magnetic resonance imaging (MRI) models created with age-appropriate MRI templates; 2) segmentation of reconstructed source activities into brain regions of interest; and 3) estimation of FC in age-related frequency bands using robust EEG FC measures, such as weighted phase lag index and orthogonalized power envelope correlation. In this paper we demonstrate the two pipelines with resting-state EEG data collected from children at 12 and 36 months of age. We also discuss the advantages and limitations of the methods/techniques integrated into the pipelines. Given there is a need in the research community for open-access analytic toolkits that can be used for pediatric EEG data, programs and codes used for the current analysis are made available to the public.
人们越来越感兴趣地使用脑电图 (EEG) 和源建模来研究皮质过程之间的功能相互作用,特别是在处理儿科人群时。本文介绍了最近用于在皮质源空间中进行 EEG FC 分析的两个管道。这些管道的分析流程可以概括为以下步骤:1)使用具有年龄适当 MRI 模板的现实 MRI 模型对高密度 EEG 数据进行皮质源重建;2)将重建的源活动分割成感兴趣的脑区;3)使用稳健的 EEG FC 措施(如加权相位滞后指数和正交功率包络相关)估计与年龄相关的频带中的 FC。在本文中,我们使用从 12 个月和 36 个月大的儿童收集的静息态 EEG 数据演示了这两个管道。我们还讨论了集成到管道中的方法/技术的优缺点。鉴于研究界需要可用于儿科 EEG 数据的开放访问分析工具包,当前分析使用的程序和代码可供公众使用。