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出生时的体型大小可预测后期的大脑容量。

Size at birth predicts later brain volumes.

机构信息

Liggins Institute, University of Auckland, Building 503, Level 2, 85 Park Road, Auckland, New Zealand.

Kidz First Neonatal Care, Counties Manukau Health, Auckland, New Zealand.

出版信息

Sci Rep. 2023 Aug 1;13(1):12446. doi: 10.1038/s41598-023-39663-9.

Abstract

We aimed to investigate whether gestation at birth, birth weight, and head circumference at birth are still associated with brain volume and white matter microstructure at 9-10 years in children born late-preterm and at term. One hundred and eleven children born at ≥ 36 weeks gestation from the CHYLD Study cohort underwent brain magnetic resonance imaging at 9 to 10 years. Images were analysed using FreeSurfer for volumetric data and tract-based spatial statistics for diffusion data. Of the cohort, 101 children were included for volumetric analysis [boys, 49(49%); median age, 9.5 (range: 8.9-12.4) years]. Shorter gestation at birth, lower birthweight, and smaller birth head circumference were associated with smaller brain volumes at 9 to 10 years, both globally and regionally. Amongst the perinatal factors studied, head circumference at birth was the strongest predictor of later brain volumes. Gestation at birth and absolute birthweight were not associated with diffusion metrics of white matter skeleton. However, lower birthweight z-score was associated with higher fractional anisotropy and lower radial diffusivity. Our findings suggest that even in children born late preterm and at term, growth before birth and timing of birth are still associated with brain development in mid-childhood.

摘要

我们旨在探究在晚期早产儿和足月出生的儿童中,出生时的胎龄、出生体重和头围是否仍与 9-10 岁时的大脑体积和白质微观结构有关。CHYLD 研究队列中的 111 名胎龄≥36 周的儿童在 9 至 10 岁时接受了脑部磁共振成像检查。使用 FreeSurfer 对容积数据进行分析,使用基于束的空间统计学对扩散数据进行分析。在该队列中,有 101 名儿童纳入了容积分析[男孩 49 名(49%);中位年龄为 9.5 岁(范围:8.9-12.4 岁)]。出生时胎龄较短、出生体重较低和头围较小与 9 至 10 岁时的大脑体积较小有关,无论是整体还是局部。在所研究的围产期因素中,出生时的头围是大脑体积后期发育的最强预测因素。出生时胎龄和绝对出生体重与白质骨架的扩散指标无关。然而,较低的出生体重 z 分数与较高的各向异性分数和较低的径向扩散率有关。我们的研究结果表明,即使在晚期早产儿和足月出生的儿童中,出生前的生长和出生时机仍与儿童中期的大脑发育有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/63f9/10393952/246ebccab89c/41598_2023_39663_Fig1_HTML.jpg

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