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Coupling Diffusion Imaging with Histological and Gene Expression Analysis to Examine the Dynamics of Cortical Areas across the Fetal Period of Human Brain Development

机译:耦合扩散成像与组织学和基因表达分析以检查人类大脑发育胎儿期皮质区域的动态

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摘要

As a prominent component of the human fetal brain, the structure of the cerebral wall is characterized by its laminar organization which includes the radial glial scaffold during fetal development. Diffusion tensor imaging (DTI) is useful to quantitatively delineate the microstructure of the developing brain and to clearly identify transient fetal layers in the cerebral wall. In our study, the spatio-temporal microstructural changes in the developing human fetal cerebral wall were quantitatively characterized with high-resolution DTI data of postmortem fetal brains from 13 to 21 gestational weeks. Eleven regions of interest for each layer in the entire cerebral wall were included. Distinctive time courses of microstructural changes were revealed for 11 regions of the neocortical plate. A histological analysis was also integrated to elucidate the relationship between DTI fractional anisotropy (FA) and histology. High FA values correlated with organized radial architecture in histological image. Expression levels of 17565 genes were quantified for each of 11 regions of human fetal neocortex from 13 to 21 gestational weeks to identify transcripts showing significant correlation with FA change. These correlations suggest that the heterogeneous and regionally specific microstructural changes of the human neocortex are related to different gene expression patterns.
机译:作为人胎儿脑的重要组成部分,脑壁的结构以其层状组织为特征,该层状组织包括胎儿发育期间的放射状神经胶质支架。弥散张量成像(DTI)可用于定量描绘发育中的大脑的微观结构,并清楚地识别脑壁中的瞬时胎儿层。在我们的研究中,使用胎儿妊娠后13到21周的高分辨率DTI数据对发育中的人类胎儿脑壁的时空微结构变化进行了定量表征。包括整个脑壁每一层的11个感兴趣区域。新皮层板的11个区域揭示了明显的微结构变化的时程。还进行了组织学分析,以阐明DTI分数各向异性(FA)与组织学之间的关系。高FA值与组织学图像中的组织放射状结构相关。在13至21个孕周,对人胎儿新皮层的11个区域的每个区域量化了17565个基因的表达水平,以鉴定与FA变化显着相关的转录本。这些相关性表明,人类新皮层的异质性和区域特定的微结构变化与不同的基因表达模式有关。

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