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Laterally of Temporoparietal Causal Connectiwity during the Prestimuius Period Correlates with Phonological Decoding Task Performance in Dyslexic and Typical Readers

机译:在阅读障碍时期,颞上因果关系的横向与阅读障碍者和典型读者的语音解码任务表现相关

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We examined how effective connectivity into and out of the left and right temporoparietal areas (TPAs) to/from other key cortical areas affected phonological decoding in 7 dyslexic readers (DRs) and 10 typical readers (TRs) who were young adults. Granger causality was used to compute the effective connectivity of the preparatory network 500 ms prior to presentation of nonwords that required phonological decoding. Neuromagnetic activity was analyzed within the low, medium, and high beta and gamma subbands. A mixed-model analysis determined whether connectivity to or from the left and right TPAs differed across connectivity direction (in vs. out), brain areas (right and left inferior frontal and ventral occipital-temporal and the contralateral TPA), reading group (DR vs. TR), and/or task performance. Within the low beta subband, better performance was associated with increased influence of the left TPA on other brain areas across both reading groups and poorer performance was associated with increased influence of the right TPA on other brain areas for DRs only. DRs were also found to have an increase in high gamma connectivity between the left TPA and other brain areas. This study suggests that hierarchal network structure rather than connectivity per se is important in determining phonological decoding performance.
机译:我们研究了7位有阅读障碍的读者(DR)和10位典型的年轻人(成年人)进/出左,右颞颞叶区域(TPA)与其他关键皮质区域之间的有效连接如何影响语音解码。格兰杰因果关系用于在表示需要语音解码的非单词之前500毫秒计算预备网络的有效连通性。在低,中和高β和γ子带内分析了神经磁活动。混合模型分析确定了在连接方向(内与外),大脑区域(右和左下额叶和腹枕颞叶和对侧TPA)和阅读组(DR)之间,与左右TPA之间的连通性是否不同与TR)和/或任务执行情况。在低β子带内,更好的性能与两个阅读组中左TPA对其他大脑区域的影响增加相关,而较差的性能与右TPA仅对DR的其他大脑区域的影响相关。还发现DR左TPA与其他大脑区域之间的高伽马连通性增加。这项研究表明,层次网络结构而不是连接性本身对于确定语音解码性能很重要。

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