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发育性阅读障碍中的静息态和基于任务的功能性脑连接

Resting-State and Task-Based Functional Brain Connectivity in Developmental Dyslexia.

作者信息

Schurz Matthias, Wimmer Heinz, Richlan Fabio, Ludersdorfer Philipp, Klackl Johannes, Kronbichler Martin

机构信息

Centre for Cognitive Neuroscience.

Centre for Cognitive Neuroscience Department of Psychology, University of Salzburg, 5020 Salzburg, Austria.

出版信息

Cereb Cortex. 2015 Oct;25(10):3502-14. doi: 10.1093/cercor/bhu184. Epub 2014 Aug 28.

Abstract

Reading requires the interaction between multiple cognitive processes situated in distant brain areas. This makes the study of functional brain connectivity highly relevant for understanding developmental dyslexia. We used seed-voxel correlation mapping to analyse connectivity in a left-hemispheric network for task-based and resting-state fMRI data. Our main finding was reduced connectivity in dyslexic readers between left posterior temporal areas (fusiform, inferior temporal, middle temporal, superior temporal) and the left inferior frontal gyrus. Reduced connectivity in these networks was consistently present for 2 reading-related tasks and for the resting state, showing a permanent disruption which is also present in the absence of explicit task demands and potential group differences in performance. Furthermore, we found that connectivity between multiple reading-related areas and areas of the default mode network, in particular the precuneus, was stronger in dyslexic compared with nonimpaired readers.

摘要

阅读需要位于大脑不同区域的多个认知过程之间的相互作用。这使得功能性脑连接研究对于理解发育性阅读障碍具有高度相关性。我们使用种子体素相关映射来分析基于任务的功能磁共振成像(fMRI)数据和静息态fMRI数据的左半球网络中的连接性。我们的主要发现是,阅读障碍读者的左后颞叶区域(梭状回、颞下回、颞中回、颞上回)与左下额回之间的连接性降低。这些网络中的连接性降低在两项与阅读相关的任务以及静息状态下均持续存在,表明存在永久性中断,这种中断在没有明确任务要求以及表现上潜在的组间差异的情况下也存在。此外,我们发现,与未受损读者相比,阅读障碍读者中多个与阅读相关的区域与默认模式网络区域(特别是楔前叶)之间的连接性更强。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8271/4585499/e9ff0220dbb3/bhu18401.jpg

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