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识别诵读困难症:在儿童中,迷津学习与诵读困难症易感基因 DCDC2 之间的联系。

Identifying Dyslexia: Link between Maze Learning and Dyslexia Susceptibility Gene, DCDC2, in Young Children.

机构信息

Department of Psychology, Lafayette College, Easton, Pennsylvania, USA.

Program in Neuroscience, Lafayette College, Easton, Pennsylvania, USA.

出版信息

Dev Neurosci. 2021;43(2):116-133. doi: 10.1159/000516667. Epub 2021 Jun 29.

Abstract

Dyslexia is a common learning disability that affects processing of written language despite adequate intelligence and educational background. If learning disabilities remain untreated, a child may experience long-term social and emotional problems, which influence future success in all aspects of their life. Dyslexia has a 60% heritability rate, and genetic studies have identified multiple dyslexia susceptibility genes (DSGs). DSGs, such as DCDC2, are consistently associated with the risk and severity of reading disability (RD). Altered neural connectivity within temporoparietal regions of the brain is associated with specific variants of DSGs in individuals with RD. Genetically altering DSG expression in mice results in visual and auditory processing deficits as well as neurophysiological and neuroanatomical disruptions. Previously, we demonstrated that learning deficits associated with RD can be translated across species using virtual environments. In this 2-year longitudinal study, we demonstrate that performance on a virtual Hebb-Williams maze in pre-readers is able to predict future reading impairment, and the genetic risk strengthens, but is not dependent on, this relationship. Due to the lack of oral reporting and use of letters, this easy-to-use tool may be particularly valuable in a remote working environment as well as working with vulnerable populations such as English language learners.

摘要

阅读障碍是一种常见的学习障碍,尽管智力和教育背景正常,但仍会影响书面语言的处理。如果学习障碍得不到治疗,孩子可能会长期面临社交和情感问题,从而影响他们未来在生活各个方面的成功。阅读障碍的遗传率为 60%,并且遗传研究已经确定了多个阅读障碍易感基因(DSGs)。DSGs,如 DCDC2,与阅读障碍(RD)的风险和严重程度密切相关。RD 患者大脑颞顶区域的神经连接改变与 DSG 的特定变体有关。在小鼠中改变 DSG 的表达会导致视觉和听觉处理缺陷以及神经生理学和神经解剖学的破坏。之前,我们证明使用虚拟环境可以将与 RD 相关的学习缺陷转化到其他物种上。在这项为期 2 年的纵向研究中,我们证明了在阅读前儿童中使用虚拟 Hebb-Williams 迷宫的表现能够预测未来的阅读障碍,并且遗传风险会增强,但不依赖于这种关系。由于缺乏口头报告和字母的使用,这个易于使用的工具在远程工作环境以及与英语学习者等弱势群体合作时可能特别有价值。

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本文引用的文献

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Translating dyslexia across species.跨物种翻译阅读障碍。
Ann Dyslexia. 2016 Oct;66(3):319-336. doi: 10.1007/s11881-016-0125-3. Epub 2016 Mar 24.

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