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Functional network architecture of reading-related regions across development

机译:整个开发过程中与阅读相关的区域的功能网络架构

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摘要

Reading requires coordinated neural processing across a large number of brain regions. Studying relationships between reading-related regions informs the specificity of information processing performed in each region. Here, regions of interest were defined from a meta-analysis of reading studies, including a developmental study. Relationships between regions were defined as temporal correlations in spontaneous fMRI signal; i.e., resting state functional connectivity MRI (RSFC). Graph theory based network analysis defined the community structure of the "reading-related" regions. Regions sorted into previously defined communities, such as the fronto-parietal and cingulo-opercular control networks, and the default mode network. This structure was similar in children, and no apparent "reading" community was defined in any age group. These results argue against regions, or sets of regions, being specific or preferential for reading, instead indicating that regions used in reading are also used in a number of other tasks.
机译:阅读需要跨大量大脑区域进行协调的神经处理。研究与阅读有关的区域之间的关系可以告知在每个区域执行的信息处理的特异性。在这里,从阅读研究(包括发展研究)的荟萃分析中定义了感兴趣的区域。区域之间的关系被定义为自发性fMRI信号中的时间相关性;即静止状态功能连接MRI(RSFC)。基于图论的网络分析定义了“阅读相关”区域的社区结构。区域分为先前定义的社区,例如额顶和耳舌-控制网络和默认模式网络。儿童的这种结构相似,在任何年龄段都没有明显的“阅读”社区。这些结果与特定于阅读或优先阅读的区域或区域集相抵触,相反,表明阅读中使用的区域也用于许多其他任务。

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