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与宫内胎儿相比,宫外早产儿的大脑功能连接。

Functional brain connectivity in ex utero premature infants compared to in utero fetuses.

机构信息

Diagnostic Imaging and Radiology, Children's National, Washington, DC, USA.

Neonatology, Children's National, Washington, DC, USA.

出版信息

Neuroimage. 2020 Oct 1;219:117043. doi: 10.1016/j.neuroimage.2020.117043. Epub 2020 Jun 11.

Abstract

Brain structural changes in premature infants appear before term age. Functional differences between premature infants and healthy fetuses during this period have yet to be explored. Here, we examined brain connectivity using resting state functional MRI in 25 very premature infants (VPT; gestational age at birth <32 weeks) and 25 healthy fetuses with structurally normal brain MRIs. Resting state data were evaluated using seed-based correlation analysis and network-based statistics using 23 regions of interest (ROIs) per hemisphere. Functional connectivity strength, the Pearson correlation between blood oxygenation level dependent signals over time across all ROIs, was compared between groups. In both cohorts, connectivity between homotopic ROIs showed a decreasing medial to lateral gradient. The cingulate cortex, medial temporal lobe and the basal ganglia shared the strongest connections. In premature infants, connections involving superior temporal, hippocampal, and occipital areas, among others, were stronger compared to fetuses. Premature infants showed stronger connectivity in sensory input and stress-related areas suggesting that extra-uterine environment exposure alters the development of select neural networks in the absence of structural brain injury.

摘要

早产儿的大脑结构变化在足月前就已经出现。在这段时间内,早产儿和健康胎儿之间的功能差异尚未被探索。在这里,我们使用静息态功能磁共振成像检查了 25 名非常早产儿(出生时胎龄<32 周)和 25 名结构正常的健康胎儿的脑连接。使用基于种子的相关分析和基于网络的统计学方法,对每个半球的 23 个感兴趣区(ROI)进行了静息态数据评估。比较了两组之间的功能连接强度,即所有 ROI 之间血氧水平依赖信号随时间的 Pearson 相关系数。在两个队列中,同型 ROI 之间的连接呈现从中到侧逐渐减少的趋势。扣带回皮质、内侧颞叶和基底节区具有最强的连接。与胎儿相比,早产儿的颞上区、海马区和枕叶区等区域的连接更强。早产儿在感觉输入和与应激相关的区域表现出更强的连接,这表明在没有结构性脑损伤的情况下,子宫外环境的暴露改变了特定神经网络的发育。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a134/7493786/288811b08bc2/nihms-1622638-f0001.jpg

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