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The brain dynamics of intellectual development: waxing and waning white and gray matter.

机译:智力发展的大脑动力学:白色和灰色物质起伏不定。

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Distributed brain areas support intellectual abilities in adults. How structural maturation of these areas in childhood enables development of intelligence is not established. Neuroimaging can be used to monitor brain development, but studies to date have typically considered single imaging modalities. To explore the impact of structural brain maturation on the development of intelligence, we used a combination of cortical thickness, white matter (WM) volume and WM microstructure in 168 healthy participants aged 8-30 years. Principal component analyses (PCAs) were conducted separately for cortical thickness, WM volume, fractional anisotropy (FA) and mean diffusivity (MD) in 64 different brain regions. For all four parameters, the PCAs revealed a general factor explaining between 40% and 53% of the variance across regions. When tested separately, negative age-independent relationships were found between intellectual abilities and cortical thickness and MD, respectively, while WM volume and FA were positively associated with intellectual abilities. The relationships between intellectual abilities and brain structure varied with age, with stronger relationships seen in children and adolescents than in young adults. Multiple regression analysis with the different imaging measures as simultaneous predictors, showed that cortical thickness, WM volume and MD all yielded unique information in explaining intellectual abilities in development. The present study demonstrates that different imaging modalities and measures give complementary information about the neural substrates of intellectual abilities in development, emphasizing the importance of multimodal imaging in investigations of neurocognitive development.
机译:分布的大脑区域支持成年人的智力。这些区域在儿童时期的结构性成熟如何促进智力发展尚未确定。神经影像学可以用来监测大脑的发育,但是迄今为止,研究通常只考虑单一的影像学方法。为了探讨结构性大脑成熟对智力发展的影响,我们在168位8-30岁的健康参与者中使用了皮质厚度,白质(WM)体积和WM微观结构的组合。主成分分析(PCA)在64个不同的大脑区域分别进行了皮质厚度,WM体积,分数各向异性(FA)和平均扩散率(MD)的分析。对于所有四个参数,PCA揭示了一个通用因素,可以解释区域间40%至53%的方差。分别进行测试时,发现智力与皮层厚度和MD之间存在负的年龄无关关系,而WM量和FA与智力呈正相关。智力和大脑结构之间的关系随年龄而变化,儿童和青少年的关系比年轻人更强。多元回归分析以不同的影像学指标作为同时预测因子,表明皮质厚度,WM体积和MD均在解释发育中的智力方面产生了独特的信息。本研究表明,不同的成像方式和措施可提供有关智力发育中神经底物的补充信息,从而强调了多模式成像在神经认知发展研究中的重要性。

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