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生命最初 2 年的脑白质微观结构发育与认知能力。

White matter microstructural development and cognitive ability in the first 2 years of life.

机构信息

Department of Psychiatry, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina.

Frank Porter Graham Child Development Institute, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina.

出版信息

Hum Brain Mapp. 2019 Mar;40(4):1195-1210. doi: 10.1002/hbm.24439. Epub 2018 Oct 24.

Abstract

White matter (WM) integrity has been related to cognitive ability in adults and children, but it remains largely unknown how WM maturation in early life supports emergent cognition. The associations between tract-based measures of fractional anisotropy (FA) and axial and radial diffusivity (AD, RD) shortly after birth, at age 1, and at age 2 and cognitive measures at 1 and 2 years were investigated in 447 healthy infants. We found that generally higher FA and lower AD and RD across many WM tracts in the first year of life were associated with better performance on measures of general cognitive ability, motor, language, and visual reception skills at ages 1 and 2, suggesting an important role for the overall organization, myelination, and microstructural properties of fiber pathways in emergent cognition. RD in particular was consistently related to ability, and protracted development of RD from ages 1 to 2 years in several tracts was associated with higher cognitive scores and better language performance, suggesting prolonged plasticity may confer cognitive benefits during the second year of life. However, we also found that cognition at age 2 was weakly associated with WM properties across infancy in comparison to child and demographic factors including gestational age and maternal education. Our findings suggest that early postnatal WM integrity across the brain is important for infant cognition, though its role in cognitive development should be considered alongside child and demographic factors.

摘要

脑白质完整性与成人和儿童的认知能力有关,但目前尚不清楚生命早期的脑白质成熟如何支持新兴认知。本研究在 447 名健康婴儿中,调查了出生后不久(1 月龄和 2 月龄)、1 岁和 2 岁时基于束流的各向异性分数(FA)、轴向和径向扩散率(AD、RD)的轨迹测量值与 1 岁和 2 岁时认知测量值之间的相关性。我们发现,1 岁时许多脑白质束流的 FA 普遍较高,AD 和 RD 较低,与 1 岁和 2 岁时的一般认知能力、运动、语言和视觉接受技能的表现较好有关,这表明纤维通路的整体组织、髓鞘形成和微观结构特性在新兴认知中起着重要作用。RD 尤其与能力有关,1 岁至 2 岁期间几个束流 RD 的持续发育与较高的认知评分和更好的语言表现有关,这表明在生命的第二年,持续的可塑性可能会带来认知益处。然而,与包括胎龄和母亲教育在内的儿童和人口统计学因素相比,我们发现,与婴儿期的 WM 特征相比,2 岁时的认知与 WM 特征的相关性较弱。我们的研究结果表明,大脑在出生后的早期 WM 完整性对婴儿认知很重要,但在认知发展中,其作用应与儿童和人口统计学因素一起考虑。

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