EEG-Meta-Microstates: Towards a More Objective Use of Resting-State EEG Microstate Findings Across Studies.

IF 2.3 3区 医学 Q3 CLINICAL NEUROLOGY Brain Topography Pub Date : 2024-03-01 Epub Date: 2023-07-29 DOI:10.1007/s10548-023-00993-6
Thomas Koenig, Sarah Diezig, Sahana Nagabhushan Kalburgi, Elena Antonova, Fiorenzo Artoni, Lucie Brechet, Juliane Britz, Pierpaolo Croce, Anna Custo, Alena Damborská, Camila Deolindo, Markus Heinrichs, Tobias Kleinert, Zhen Liang, Michael M Murphy, Kyle Nash, Chrystopher Nehaniv, Bastian Schiller, Una Smailovic, Povilas Tarailis, Miralena Tomescu, Eren Toplutaş, Federica Vellante, Anthony Zanesco, Filippo Zappasodi, Qihong Zou, Christoph M Michel
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Abstract

Over the last decade, EEG resting-state microstate analysis has evolved from a niche existence to a widely used and well-accepted methodology. The rapidly increasing body of empirical findings started to yield overarching patterns of associations of biological and psychological states and traits with specific microstate classes. However, currently, this cross-referencing among apparently similar microstate classes of different studies is typically done by "eyeballing" of printed template maps by the individual authors, lacking a systematic procedure. To improve the reliability and validity of future findings, we present a tool to systematically collect the actual data of template maps from as many published studies as possible and present them in their entirety as a matrix of spatial similarity. The tool also allows importing novel template maps and systematically extracting the findings associated with specific microstate maps from ongoing or published studies. The tool also allows importing novel template maps and systematically extracting the findings associated with specific microstate maps in the literature. The analysis of 40 included sets of template maps indicated that: (i) there is a high degree of similarity of template maps across studies, (ii) similar template maps were associated with converging empirical findings, and (iii) representative meta-microstates can be extracted from the individual studies. We hope that this tool will be useful in coming to a more comprehensive, objective, and overarching representation of microstate findings.

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脑电图微状态:在各项研究中更客观地使用静息态脑电图微状态结果。
在过去的十年中,脑电图静息微状态分析已从一个小众的存在发展成为一种广泛使用和广为接受的方法。迅速增加的实证研究结果开始产生生物和心理状态及特征与特定微状态类别相关的总体模式。然而,目前不同研究中表面上相似的微观状态类别之间的相互参照通常是由个别作者通过 "目测 "印刷模板图来完成的,缺乏系统的程序。为了提高未来研究结果的可靠性和有效性,我们提出了一种工具,从尽可能多的已发表研究中系统地收集模板图的实际数据,并将其完整地呈现为空间相似性矩阵。该工具还可以导入新的模板图,并从正在进行或已发表的研究中系统地提取与特定微状态图相关的研究结果。该工具还可以导入新的模板地图,并系统地提取文献中与特定微状态图相关的研究结果。对 40 套模板图的分析表明(i) 各项研究的模板图具有高度的相似性,(ii) 相似的模板图与趋同的实证研究结果相关,(iii) 可以从各项研究中提取具有代表性的元微态。我们希望这一工具将有助于更全面、客观、总体地反映微观状态的研究结果。
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来源期刊
Brain Topography
Brain Topography 医学-临床神经学
CiteScore
4.70
自引率
7.40%
发文量
41
审稿时长
3 months
期刊介绍: Brain Topography publishes clinical and basic research on cognitive neuroscience and functional neurophysiology using the full range of imaging techniques including EEG, MEG, fMRI, TMS, diffusion imaging, spectroscopy, intracranial recordings, lesion studies, and related methods. Submissions combining multiple techniques are particularly encouraged, as well as reports of new and innovative methodologies.
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