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Development of brain white matter and math computation ability in children born very preterm and full-term

机译:脑白质和数学计算能力的发展,儿童出生的早产和全职

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Children born very preterm (VPT; 32 weeks’ gestation) have alterations in brain white matter and poorer math ability than full-term (FT) peers. Diffusion-weighted magnetic resonance imaging studies suggest a link between white matter microstructure and math in VPT and FT children, although longitudinal studies using advanced modelling are lacking. In a prospective longitudinal cohort of VPT and FT children we used Fixel-Based Analysis to investigate associations between maturation of white matter fibre density (FD), fibre-bundle cross‐section (FC), and combined fibre density and cross‐section (FDC) and math computation ability at 7 ( n = 136 VPT; n = 32 FT) and 13 ( n = 130 VPT; n = 44 FT) years, as well as between change in white matter and math computation ability from 7 to 13 years ( n = 103 VPT; n = 21 FT). In both VPT and FT children, higher FD, FC and FDC in visual, sensorimotor and cortico-thalamic/thalamo-cortical white matter tracts were associated with better math computation ability at 7 and 13 years. Longitudinally, accelerated maturation of the posterior body of the corpus callosum (FDC) was associated with greater math computation development. White matter-math associations were similar for VPT and FT children. In conclusion, white matter maturation is associated with math computation ability across late childhood, irrespective of birth group.
机译:儿童出生非常预料(VPT;&lt 19周妊娠)在脑白质和数学能力较差的情况下比全职(FT)同龄人更换。扩散加权磁共振成像研究表明白质微观结构与vPT和FT儿童数学之间的联系,尽管缺乏使用先进建模的纵向研究。在vpt和ft儿童的前瞻性纵向队列中,我们使用了基于翅膀的分析来研究白质纤维密度(FD),纤维束横截面(Fc)和组合纤维密度和横截面(FDC)之间的成熟之间的关联(FDC )和数学计算能力为7(n = 136 vpt; n = 32英尺)和13(n = 130 vpt; n = 44英尺),以及从7到13年的白质和数学计算能力的变化(n = 103 VPT; n = 21英尺)。在VPT和FT儿童中,高级FD,FC和FDC在视觉,感官电池和皮质 - 丘脑/丘脑 - 皮质白质白品物质中与7至13年的数学计算能力相关。纵向地,胼callosum(FDC)后体的加速成熟与更高的数学计算发展有关。白质 - 数学协会对于VPT和FT儿童相似。总之,无论出生群体如何,白质成熟与晚期儿童时期的数学计算能力相关。

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