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Reversed hierarchy in the brain for general and specific cognitive abilities: A morphometric analysis

机译:颠倒的大脑层次,用于一般和特定的认知能力:形态计量学分析

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摘要

Intelligence is composed of a set of cognitive abilities hierarchically organized. General and specific abilities capture distinguishable, but related, facets of the intelligence construct. Here, we analyze gray matter with three morphometric indices (volume, cortical surface area, and cortical thickness) at three levels of the intelligence hierarchy (tests, first-order factors, and a higher-order general factor, g). A group of one hundred and four healthy young adults completed a cognitive battery and underwent high-resolution structural MRI. Latent scores were computed for the intelligence factors and tests were also analyzed. The key finding reveals substantial variability in gray matter correlates at the test level, which is substantially reduced for the first-order and the higher-order factors. This supports a reversed hierarchy in the brain with respect to cognitive abilities at different psychometric levels: the greater the generality, the smaller the number of relevant gray matter clusters accounting for individual differences in intelligent performance.
机译:智力由一系列按层次组织的认知能力组成。通用能力和特定能力捕获了智能结构中可区分但相关的方面。在这里,我们用三个形态计量指标(体积,皮质表面积和皮质厚度)在智能层次的三个层次(测试,一阶因子和一个高阶通用因子g)上分析灰质。一百零四名健康的年轻人完成了一项认知研究,并接受了高分辨率的结构MRI检查。计算智力因素的潜在得分并分析测试。关键发现揭示了在测试水平上灰质相关性的显着变化,对于一阶和高阶因子,该变化显着减小。这支持了在不同心理测量水平下大脑的逆向层次的认知能力:普遍性越大,说明智能表现的个体差异的相关灰质簇的数量越少。

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