Department of Pediatric Newborn Medicine, Brigham and Women's Hospital, Harvard Medical School, Boston, Massachusetts.
Department of Pediatrics, Washington University, Saint Louis, Missouri.
Pediatr Res. 2018 May;83(5):976-981. doi: 10.1038/pr.2018.4. Epub 2018 Feb 7.
ObjectiveTo examine, using serial magnetic resonance imaging (MRI), total and tissue-specific brain growth in very-preterm (VPT) infants during the period that coincides with the early and late stages of the third trimester.MethodsStructural MRI scans were collected from two prospective cohorts of VPT infants (≤30 weeks of gestation). A total of 51 MRI scans from 18 VPT subjects were available for volumetric analysis. Brain tissue was classified into cerebrospinal fluid, cortical gray matter, myelinated and unmyelinated white matter, deep nuclear gray matter, and cerebellum. Nine infants had sufficient serial scans to allow comparison of tissue growth during the periods corresponding to the early and late stages of the third trimester.ResultsTissue-specific differences in ex utero brain growth trajectories were observed in the period corresponding to the third trimester. Most notably, there was a marked increase in cortical gray matter expansion from 34 to 40 weeks of postmenstrual age, emphasizing this critical period of brain development.ConclusionUtilizing serial MRI to document early brain development in VPT infants, this study documents regional differences in brain growth trajectories ex utero during the period corresponding to the first and second half of the third trimester, providing novel insight into the maturational vulnerability of the rapidly expanding cortical gray matter in the NICU.
使用连续磁共振成像(MRI),检查极早产儿(VPT)在与第三孕期早、晚期相对应的时期内的总体和组织特异性脑生长情况。
对两个前瞻性 VPT 婴儿队列(≤30 孕周)的结构 MRI 扫描进行了收集。18 名 VPT 受试者的 51 次 MRI 扫描可用于容积分析。脑组织分为脑脊液、皮质灰质、髓鞘和非髓鞘白质、深部核团灰质和小脑。9 名婴儿有足够的连续扫描,可比较与第三孕期早、晚期相对应的时期内的组织生长情况。
在与第三孕期相对应的时期,观察到了宫外脑生长轨迹的组织特异性差异。最值得注意的是,皮质灰质的扩张从孕龄 34 周到 40 周显著增加,强调了这个大脑发育的关键时期。
本研究利用连续 MRI 记录 VPT 婴儿的早期脑发育情况,记录了在与第三孕期前、后半期相对应的时期内宫外脑生长轨迹的区域差异,为 NICU 中快速扩张的皮质灰质的成熟易损性提供了新的见解。