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首页> 外文期刊>NeuroImage >Beyond age and gender: relationships between cortical and subcortical brain volume and cognitive-motor abilities in school-age children.
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Beyond age and gender: relationships between cortical and subcortical brain volume and cognitive-motor abilities in school-age children.

机译:超越年龄和性别:学龄儿童的皮质和皮质下脑容量与认知运动能力之间的关系。

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摘要

There is growing evidence that cognitive and motor functions are interrelated and may rely on the development of the same cortical and subcortical neural structures. However, no study to date has examined the relationships between brain volume, cognitive ability, and motor ability in typically developing children. The NIH MRI Study of Normal Brain Development consists of a large, longitudinal database of structural MRI and performance measures from a battery of neuropsychological assessments from typically developing children. This dataset provides a unique opportunity to examine relationships between the brain and cognitive-motor abilities. A secondary analysis was conducted on data from 172 children between the ages of 6 to 13 years with up to 2 measurement occasions (initial testing and 2-year follow-up). Linear mixed effects modeling was employed to account for age and gender effects on the development of specific cortical and subcortical volumes as well as behavioral performance measures of interest. Above and beyond the effects of age and gender, significant relationships were found between general cognitive ability (IQ) and the volume of subcortical brain structures (cerebellum and caudate) as well as spatial working memory and the putamen. In addition, IQ was found to be related to global and frontal gray matter volume as well as parietal gray and white matter. At the behavioral level, general cognitive ability was also found to be related to visuomotor ability (pegboard) and executive function (spatial working memory). These results support the notion that cognition and motor skills may be fundamentally interrelated at both the levels of behavior and brain structure.
机译:越来越多的证据表明,认知功能和运动功能是相互关联的,并且可能依赖于相同的皮层和皮层下神经结构的发展。然而,迄今为止,尚无研究检查典型发育儿童的大脑容量,认知能力和运动能力之间的关系。 NIH正常大脑发育的MRI研究包括一个大型的纵向MRI结构数据库,以及来自典型发育中儿童的一系列神经心理学评估得出的性能指标。该数据集提供了一个独特的机会来检查大脑与认知运动能力之间的关系。对来自172名6至13岁儿童的数据进行了二次分析,最多进行2次测量(初始测试和2年随访)。线性混合效应模型用于说明年龄和性别对特定皮层和皮层下体积的发展以及感兴趣的行为表现指标的影响。除了年龄和性别的影响外,还发现一般认知能力(IQ)与皮质下大脑结构(小脑和尾状)以及空间工作记忆和壳核之间存在显着关系。此外,发现智商与整体和额叶灰质量以及顶叶灰质和白质有关。在行为方面,还发现一般的认知能力与视觉运动能力(写字板)和执行功能(空间工作记忆)有关。这些结果支持这样的观念,即认知和运动技能可能在行为和大脑结构的水平上相互关联。

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