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内在脑岛网络在儿童阅读和算术技能中的作用。

Intrinsic insula network engagement underlying children's reading and arithmetic skills.

机构信息

Department of Psychology, National Chengchi University, Taipei, Taiwan; Research Center for Mind, Brain & Learning, National Chengchi University, Taipei, Taiwan.

Research Center for Mind, Brain & Learning, National Chengchi University, Taipei, Taiwan.

出版信息

Neuroimage. 2018 Feb 15;167:162-177. doi: 10.1016/j.neuroimage.2017.11.027. Epub 2017 Nov 21.

Abstract

The neural substrates of children's reading and arithmetic skills have long been of great interest to cognitive neuroscientists. However, most previous studies have focused on the contrast between these skills as specific domains. Here, we investigate the potentially shared processes across these domains by focusing on how the neural circuits associated with cognitive control influence reading and arithmetic proficiency in 8-to-10-year-old children. Using a task-free resting state approach, we correlated the intrinsic functional connectivity of the right anterior insula (rAI) network with performance on assessments of Chinese character recognition, reading comprehension, subtraction, and multiplication performance. A common rAI network strengthened for reading and arithmetic skill, including the right middle temporal gyrus (MTG) and superior temporal gyrus (STG) in the lateral temporal cortex, as well as the inferior frontal gyrus (IFG). In addition, performance measures evidenced rAI network specializations. Single character recognition was uniquely associated with connectivity to the right superior parietal lobule (SPL). Reading comprehension only, rather than character recognition, was associated with connectivity to the right IFG, MTG and angular gyrus (AG). Furthermore, subtraction was associated with connectivity to premotor cortex whereas multiplication was associated with the supramarginal gyrus. Only reading comprehension and multiplication were associated with hyper connectivity within local rAI network. These results indicate that during a critical period for children's acquisition of reading and arithmetic, these skills are supported by both intra-network synchronization and inter-network connectivity of rAI circuits. Domain-general intrinsic insular connectivity at rest contained also, functional components that segregated into different sets of skill-related networks. The embedded components of cognitive control may be essential to understanding the interplay of multiple functional circuits necessary to more fully characterize cognitive skill acquisition.

摘要

儿童阅读和算术技能的神经基础一直是认知神经科学家非常感兴趣的领域。然而,大多数先前的研究都集中在这些技能作为特定领域之间的对比上。在这里,我们通过关注与认知控制相关的神经回路如何影响 8 至 10 岁儿童的阅读和算术能力,来研究这些领域之间可能存在的共享过程。我们使用无任务静息状态方法,将右前岛叶(rAI)网络的内在功能连接与汉字识别、阅读理解、减法和乘法表现的评估结果进行相关分析。一个共同的 rAI 网络加强了阅读和算术技能,包括外侧颞叶的右侧颞中回(MTG)和颞上回(STG),以及下额叶回(IFG)。此外,表现测量结果表明 rAI 网络的专业化。单个字符识别与右侧顶叶上回(SPL)的连接性是唯一相关的。阅读理解与右侧 IFG、MTG 和角回(AG)的连接性相关,而不是字符识别。此外,减法与运动前皮层相关,而乘法与缘上回相关。只有阅读理解和乘法与 rAI 网络内的超连接相关。这些结果表明,在儿童阅读和算术能力发展的关键时期,这些技能既受到 rAI 网络内同步的支持,也受到 rAI 网络间连接的支持。静息状态下的 rAI 网络内在的一般连通性也包含了功能成分,这些功能成分分为不同的技能相关网络。认知控制的嵌入式成分对于理解多个功能回路的相互作用可能是理解认知技能获得所必需的。

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