Shared and task-specific brain functional differences across multiple tasks in children with developmental dyslexia

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Anqi Wang , Xiaohui Yan , Guoyan Feng , Fan Cao
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Abstract

Different tasks have been used in examining the neural functional differences associated with developmental dyslexia (DD), and consequently, different findings have been reported. However, very few studies have systematically compared multiple tasks in understanding what specific task differences each brain region is associated with. In this study, we employed an auditory rhyming task, a visual rhyming task, and a visual spelling task, in order to investigate shared and task-specific neural differences in Chinese children with DD. First, we found that children with DD had reduced activation in the opercular part of the left inferior frontal gyrus (IFG) only in the two rhyming tasks, suggesting impaired phonological analysis. Children with DD showed functional differences in the right lingual gyrus/inferior occipital gyrus only in the two visual tasks, suggesting deficiency in their visuo-orthographic processing. Moreover, children with DD showed reduced activation in the left dorsal inferior frontal gyrus and increased activation in the right precentral gyrus across all of the three tasks, suggesting neural signatures of DD in Chinese. In summary, our study successfully separated brain regions associated with differences in orthographic processing, phonological processing, and general lexical processing in DD. It advances our understanding about the neural mechanisms of DD.

发育性阅读障碍儿童在完成多项任务时大脑功能的共同差异和特定任务差异
在研究与发展性阅读障碍(DD)相关的神经功能差异时,曾使用过不同的任务,因此也有不同的研究结果。然而,很少有研究对多种任务进行系统比较,以了解每个脑区与哪些具体任务差异相关。在本研究中,我们采用了听觉押韵任务、视觉押韵任务和视觉拼写任务,以研究中国诵读困难儿童的共同神经差异和特定任务神经差异。首先,我们发现聋儿仅在两项押韵任务中左额叶下回(IFG)的操作部激活减少,这表明聋儿的语音分析能力受损。只有在两项视觉任务中,聋儿的右侧舌回/枕骨下回才出现功能性差异,这表明他们的视觉-正字法处理能力存在缺陷。此外,在所有三项任务中,DD患儿左侧额叶背下回的活化程度降低,而右侧中央前回的活化程度升高,这提示了中文DD的神经特征。总之,我们的研究成功地分离了与DD正字法加工、语音加工和一般词汇加工差异相关的脑区。该研究加深了我们对 DD 神经机制的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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