Gullick Margaret M, Booth James R
Roxelyn and Richard Pepper Department of Communication Sciences and Disorders, Northwestern University, 2240 Campus Drive, Evanston, IL 60208, USA.
Roxelyn and Richard Pepper Department of Communication Sciences and Disorders, Northwestern University, 2240 Campus Drive, Evanston, IL 60208, USA.
Dev Cogn Neurosci. 2015 Jun;13:68-74. doi: 10.1016/j.dcn.2015.05.002. Epub 2015 May 13.
Structural coherence across the arcuate fasciculus has previously been related to reading skill, but the arcuate may be divisible into distinct subtracts which support different functions. Here, we examine longitudinal data from 30 children between the ages of 8 and 14 to determine whether initial coherence in any of the arcuate's subsections is predictive of changes in reading across a longitudinal interval of approximately three years. The arcuate was divided using probabilistic tractography; mean fractional anisotropy across each subtract was extracted for each participant. Time 1 to Time 2 change in reading skill (identification, fluency score average) was significantly and uniquely predicted by only direct fronto-temporal arcuate segment coherence. Participants with lower direct segment FA demonstrated decreases in reading scores, potentially reflecting lessened improvements due to continued inefficient processing. These results were consistent in the older and younger halves of the sample. As such, we demonstrate that it is specifically the direct segment of the arcuate that may support and be predictive of reading skill both initially and longitudinally across development.
以往研究表明,弓状束的结构连贯性与阅读技能有关,但弓状束可能可分为不同的子束,它们支持不同的功能。在此,我们研究了30名8至14岁儿童的纵向数据,以确定弓状束任何子部分的初始连贯性是否能预测在大约三年的纵向时间间隔内阅读能力的变化。使用概率纤维束成像技术划分弓状束;为每个参与者提取每个子束的平均分数各向异性。阅读技能从时间1到时间2的变化(识别、流利度得分平均值)仅由直接的额颞弓状段连贯性显著且独特地预测。直接段分数各向异性较低的参与者阅读分数下降,这可能反映出由于持续低效处理导致的进步减少。这些结果在样本的年龄较大和较小的两组中都是一致的。因此,我们证明,正是弓状束的直接段在发育过程的初始阶段和纵向都可能支持并预测阅读技能。