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EEG analysis of color effects using effective connectivity based on graph theory during a multimedia learning task

机译:基于图形理论在多媒体学习任务期间使用有效连通性的颜色效应的脑电图分析

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The main objective of this work was to investigate the effect of color on brain dynamics during multimedia learning using effective connectivity analysis based on graph theory. EEG-based effective connectivity was computed using phase slope index (PSI) over 171 combinations of 19 electrodes of the EEG signals for six distinct frequency bands (delta, theta, alpha1, alpha2, beta, and gamma). Graph theory approach was applied to characterize patterns of effective connectivity from estimated PSI by determining total in-degree and out-degree flows at nodal regions of interest. The effective connectivity showed that increased interactions exist between anterior-posterior brain regions for higher frequency bands (alpha1, alpha2, beta, and gamma) with concurrent decrease interactions found in lower frequency bands (delta and theta) during learning content with black-and-white visualizations compared to colored visualizations. Further, graph theory analysis using a degree of connectivity demonstrated that significant higher out-degree information flows from right parietal to bilateral frontal areas in the delta; from left frontal to midline parietal and right posterior regions in the alpha1, alpha2 and beta during learning with colored visualizations. While significant higher out-degree information flows from (midline and right) parietal to frontal regions observed in alpha1, alpha2, and beta when learning content with blackand-white visualizations. To conclude, the results indicate that content's color effect on brain's interaction and visual working memory potentially improves learning with top-down processing influences on selective attention and visual information for memory encoding.
机译:本作品的主要目标是研究利用基于图论使用有效连通性分析在多媒体学习期间脑动力学对脑动力学的影响。使用相位斜率指数(PSI)计算基于eEG的有效连接,超过171个组合的六个不同频带(Delta,Theta,alpha1,alpha2,beta和γ)的EEG信号的19个电极组合。图表理论方法应用于通过确定令人兴趣的节点区域中的程度和出差流量来表征来自估计的PSI的有效连通性模式。有效的连接显示,在学习内容中,在学习内容与黑色的较低频带(Delta和Theta)中,存在增加的相互作用,在较高频带(α1,α2,β和伽马)之间存在增加的相互作用,其在较低频带(Delta和Theta)中发现的相互作用。与彩色可视化相比,白色可视化。此外,使用连接程度的图表理论分析表明,从右翼度到三角洲的双边前部区域流出了显着的更高的高度信息;在学习期间,从左前到中线到中线顶部和右后验区域,在学习时与彩色可视化。虽然当使用Blackand-White Visualizations学习内容时,虽然在Alpha1,Alpha2和Beta中观察到的前部区域,从(中线和右)上部区域流向阶级区域。为了得出结论,内容对大脑的相互作用和视觉工作记忆的颜色效应可能改善了对自上而下处理的学习,这些影响对存储器编码的选择性关注和视觉信息影响。

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