Chenglin Lou, Alexandra M Cross, Lien Peters, Daniel Ansari, Marc F Joanisse
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引用次数: 0
摘要
我们研究了丘脑皮层连接结构如何反映儿童的阅读能力。我们收集了 64 名患有和未患有阅读障碍的 8-14 岁儿童(33 名女孩)的 3 T 扩散加权核磁共振成像和一系列阅读测量数据。根据全脑白质网络和中枢附加阅读网络计算了左右丘脑的拓扑特性,并将其与儿童阅读和阅读相关能力的几项测试得分进行了相关分析。左丘脑的拓扑指标与阅读得分之间的显著相关性仅在中枢相连的阅读网络中观察到。局部效率与快速自动命名呈负相关。传输成本与音位解码呈正相关,而且这种相关性与网络效率得分无关;后续分析进一步证明,这种效应是左侧丘脑的脉络核和内侧核所特有的。我们使用一个独立的数据集验证了这些结果,并证明丘脑连通性与音位解码之间的关系是特别稳健的。总之,研究结果凸显了左丘脑和丘脑皮层网络在理解儿童熟练阅读和阅读障碍的神经认知基础中的作用。
Patterns of the left thalamus embedding into the connectome associated with reading skills in children with reading disabilities.
We examined how thalamocortical connectivity structure reflects children's reading performance. Diffusion-weighted MRI at 3 T and a series of reading measures were collected from 64 children (33 girls) ages 8-14 years with and without dyslexia. The topological properties of the left and right thalamus were computed based on the whole-brain white matter network and a hub-attached reading network, and were correlated with scores on several tests of children's reading and reading-related abilities. Significant correlations between topological metrics of the left thalamus and reading scores were observed only in the hub-attached reading network. Local efficiency was negatively correlated with rapid automatized naming. Transmission cost was positively correlated with phonemic decoding, and this correlation was independent of network efficiency scores; follow-up analyses further demonstrated that this effect was specific to the pulvinar and mediodorsal nuclei of the left thalamus. We validated these results using an independent dataset and demonstrated that that the relationship between thalamic connectivity and phonemic decoding was specifically robust. Overall, the results highlight the role of the left thalamus and thalamocortical network in understanding the neurocognitive bases of skilled reading and dyslexia in children.