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阅读障碍儿童在算术任务期间基于脑电图的功能性脑网络分析

EEG based functional brain networks analysis in dyslexic children during arithmetic task.

作者信息

Seshadri N P Guhan, Geethanjali B, Singh Bikesh Kumar

机构信息

Department of Biomedical Engineering, National Institute of Technology Raipur, Raipur, India.

Department of Biomedical Engineering, SSN College of Engineering, Chennai, India.

出版信息

Cogn Neurodyn. 2022 Oct;16(5):1013-1028. doi: 10.1007/s11571-021-09769-9. Epub 2022 Jan 27.

Abstract

Developmental Dyslexia is a neuro-developmental disorder that often refers to a phonological processing deficit regardless of average IQ. The present study investigated the distinct functional changes in brain networks of dyslexic children during arithmetic task performance using an electroencephalogram. Fifteen dyslexic children and fifteen normally developing children (NDC) were recruited and performed an arithmetic task. Brain functional network measures such as node strength, clustering coefficient, characteristic pathlength and small-world were calculated using graph theory methods for both groups. Task performance showed significantly less performance accuracy in dyslexics against NDC. The neural findings showed increased connectivity in the delta band and reduced connectivity in theta, alpha, and beta band at temporoparietal, and prefrontal regions in dyslexic group while performing the task. The node strengths were found to be significantly high in delta band (T3, O1, F8 regions) and low in theta (T5, P3, Pz regions), beta (Pz) and gamma band (T4 and prefrontal regions) during the task in dyslexics compared to the NDC. The clustering coefficient was found to be significantly low in the dyslexic group (theta and alpha band) and characteristic pathlength was found to be significantly high in the dyslexic group (theta and alpha band) compared to the NDC group while performing task. In conclusion, the present study shows evidence for poor fact-retrieval mechanism and altered network topology in dyslexic brain networks during arithmetic task performance.

摘要

发育性阅读障碍是一种神经发育障碍,通常指无论智商平均水平如何,都存在语音处理缺陷。本研究使用脑电图研究了阅读障碍儿童在算术任务执行过程中大脑网络的不同功能变化。招募了15名阅读障碍儿童和15名正常发育儿童(NDC),并让他们执行一项算术任务。使用图论方法计算了两组的大脑功能网络指标,如节点强度、聚类系数、特征路径长度和小世界指标。任务表现显示,阅读障碍儿童的表现准确性明显低于NDC组。神经学研究结果显示,在执行任务时,阅读障碍组的颞顶叶和前额叶区域在δ波段的连通性增加,而在θ、α和β波段的连通性降低。与NDC组相比,阅读障碍儿童在任务期间,δ波段(T3、O1、F8区域)的节点强度显著较高,而在θ波段(T5、P3、Pz区域)、β波段(Pz)和γ波段(T4和前额叶区域)的节点强度显著较低。与NDC组相比,阅读障碍组在执行任务时,聚类系数在θ和α波段显著较低,特征路径长度在θ和α波段显著较高。总之,本研究表明,在算术任务执行过程中,阅读障碍儿童的大脑网络存在事实检索机制不佳和网络拓扑改变的证据。

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