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早产儿海马区发育的不对称性和结构协变。

Hippocampal asymmetry of regional development and structural covariance in preterm neonates.

机构信息

School of Information Science and Engineering, Shandong Normal University, 250014 Jinan, China.

Department of Neurology, USC Stevens Neuroimaging and Informatics Institute, Keck School of Medicine, University of Southern California, Los Angeles, CA 90033, USA.

出版信息

Cereb Cortex. 2022 Sep 19;32(19):4271-4283. doi: 10.1093/cercor/bhab481.

Abstract

Premature birth is associated with a high prevalence of neurodevelopmental impairments in surviving infants. The hippocampus is known to be critical for learning and memory, yet the putative effects of hippocampal dysfunction remain poorly understood in preterm neonates. In particular, while asymmetry of the hippocampus has been well noted both structurally and functionally, how preterm birth impairs hippocampal development and to what extent the hippocampus is asymmetrically impaired by preterm birth have not been well delineated. In this study, we compared volumetric growth and shape development in the hippocampal hemispheres and structural covariance (SC) between hippocampal vertices and cortical thickness in cerebral cortex regions between two groups. We found that premature infants had smaller volumes of the right hippocampi only. Lower thickness was observed in the hippocampal head in both hemispheres for preterm neonates compared with full-term peers, though preterm neonates exhibited an accelerated age-related change of hippocampal thickness in the left hippocampi. The SC between the left hippocampi and the limbic lobe of the premature infants was severely impaired compared with the term-born neonates. These findings suggested that the development of the hippocampus during the third trimester may be altered following early extrauterine exposure with a high degree of asymmetry.

摘要

早产与存活婴儿神经发育障碍的高患病率有关。已知海马体对于学习和记忆至关重要,但早产儿中海马功能障碍的潜在影响仍知之甚少。特别是,虽然海马体的不对称性在结构和功能上都得到了很好的描述,但早产如何损害海马体的发育,以及早产对海马体的损害在多大程度上是不对称的,这些问题还没有得到很好的阐明。在这项研究中,我们比较了两组之间海马半球的体积生长和形状发育,以及海马顶点与大脑皮质区域皮质厚度之间的结构协方差 (SC)。我们发现,早产儿的右侧海马体体积较小。与足月婴儿相比,早产儿的双侧海马头区皮质厚度较低,但早产儿的左侧海马体厚度随年龄的增长变化较快。与足月出生的婴儿相比,早产儿的左侧海马体与边缘叶之间的 SC 严重受损。这些发现表明,在子宫外早期暴露后,可能会改变妊娠晚期海马体的发育,并且具有高度的不对称性。

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