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The development of brain functional connectome during text reading

机译:文本阅读期间脑功能连接的发展

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Reading is an important skill for human beings to obtain information, whose acquisition is a major learning task for children. Especially, compared with single word reading, text reading requires an integration of multiple cognitive processes, which makes its underlying neural developmental mechanism not only extremely complicated but also remained poorly understood. Employing the graph theory analysis method, the present study explored the development of brain in the context of story reading from the perspective of connectomics. Forty-two primary school students and thirty-two adults read the stories in the functional magnetic resonance imaging (fMRI) experiment. We found that compared with children, adults had increased connectivity strength, nodal degree, and modular interactions for vision-related and semantics-related brain regions while decreased connectivity strength, nodal degree, and modular interactions for phonology-related brain regions. Brain-behavior association analysis suggested that the transmission to vision-related brain circuits would enhance the reading performance in adults, whereas phonology-related brain circuits played important roles in children’s reading before they develop into fluent readers. Collectivity, we highlight a shift from reliance on phonology-related networks to semantics-related and vision-related networks with age for text reading, which provides insights into the underlying neural signature of developmental cognitive mechanisms.
机译:阅读是人类获取信息的重要技能,其收购是儿童的主要学习任务。特别是,与单词读数相比,文本阅读需要一体化多重认知过程,这使其潜在的神经发育机制不仅非常复杂,而且仍然持久了解。采用图表理论分析方法,本研究探讨了从Connectomics的角度读取故事背景下的大脑的发展。四十二所小学生和三十二名成年人阅读功能磁共振成像(FMRI)实验中的故事。我们发现与儿童相比,成年人的连续性强度增加,节点节点和模块化相互作用,同时降低了与语音相关脑区的连通强度,节点度和模块化相互作用。脑行为协会分析表明,对视觉相关的大脑电路的传播将增强成人的阅读性能,而音韵学相关的脑电路在儿童阅读之前发挥着重要作用,然后在他们发展到流利的读者之前。集体,我们突出了与文本阅读年龄的语义相关网络的依赖与语音相关和视觉相关网络的转变,为文本阅读时期提供了洞察力的神经签名的洞察力。

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