首页> 美国卫生研究院文献>Frontiers in Systems Neuroscience >Greater Pre-Stimulus Effective Connectivity from the Left Inferior Frontal Area to other Areas is Associated with Better Phonological Decoding in Dyslexic Readers
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Greater Pre-Stimulus Effective Connectivity from the Left Inferior Frontal Area to other Areas is Associated with Better Phonological Decoding in Dyslexic Readers

机译:从左下额叶区域到其他区域的更大的刺激前有效连接与阅读障碍读者的更好的语音解码相关

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摘要

Functional neuroimaging studies suggest that neural networks that subserve reading are organized differently in dyslexic readers (DRs) and typical readers (TRs), yet the hierarchical structure of these networks has not been well studied. We used Granger causality to examine the effective connectivity of the preparatory network that occurs prior to viewing a non-word stimulus that requires phonological decoding in 7 DRs and 10 TRs who were young adults. The neuromagnetic activity that occurred 500 ms prior to each rhyme trial was analyzed from sensors overlying the left and right inferior frontal areas (IFA), temporoparietal areas, and ventral occipital–temporal areas within the low, medium, and high beta and gamma sub-bands. A mixed-model analysis determined whether connectivity to or from the left and right IFAs differed across connectivity direction (into vs. out of the IFAs), brain areas, reading group, and/or performance. Results indicated that greater connectivity in the low beta sub-band from the left IFA to other cortical areas was significantly related to better non-word rhyme discrimination in DRs but not TRs. This suggests that the left IFA is an important cortical area involved in compensating for poor phonological function in DRs. We suggest that the left IFA activates a wider-than usual network prior to each trial in the service of supporting otherwise effortful phonological decoding in DRs. The fact that the left IFA provides top-down activation to both posterior left hemispheres areas used by TRs for phonological decoding and homologous right hemisphere areas is discussed. In contrast, within the high gamma sub-band, better performance was associated with decreased connectivity between the left IFA and other brain areas, in both reading groups. Overly strong gamma connectivity during the pre-stimulus period may interfere with subsequent transient activation and deactivation of sub-networks once the non-word appears.
机译:功能性神经影像学研究表明,阅读困难的阅读器(DR)和典型阅读器(TR)的阅读辅助神经网络的组织方式不同,但是尚未很好地研究这些网络的层次结构。我们使用格兰杰因果关系来检验在查看非单词刺激之前发生的准备网络的有效连通性,这些非单词刺激需要对7位年轻的DR和10位TR进行语音解码。在每个韵律试验之前500µms内发生的神经磁活动,是通过覆盖低,中和高β和γ亚γ区域左右左右额额区(IFA),颞顶区以及腹枕-颞区的传感器进行分析的。乐队。混合模型分析确定了在连接方向(进入或离开IFA),大脑区域,阅读群体和/或表现方面,与左IFA和右IFA之间的连通性是否不同。结果表明,从左IFA到其他皮质区域的低beta子带中的更大连通性与DR中更好的非单词韵律辨别力有关,而与TRs无关。这表明左IFA是重要的皮层区域,可补偿DR的不良语音功能。我们建议在每次试验之前,左IFA都会激活比平常更宽的网络,以支持DR中原本费力的语音解码。讨论了左IFA为TRs用于语音解码的后左半球区域和同源右半球区域提供自上而下的激活的事实。相比之下,在两个阅读组中,在较高的伽玛子带中,更好的性能与左IFA和其他大脑区域之间的连通性降低相关。一旦出现非单词,在预激励阶段过强的伽玛连接性可能会干扰随后的子网瞬态激活和去激活。

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