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皮质灰质和浅层白质的细胞/骨髓结构在早期神经发育中的变化:早产儿的多模态 MRI 研究。

Cyto/myeloarchitecture of cortical gray matter and superficial white matter in early neurodevelopment: multimodal MRI study in preterm neonates.

机构信息

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

Department of Radiology & Biomedical Imaging, University of California, San Francisco, San Francisco, CA 94143, USA.

出版信息

Cereb Cortex. 2022 Dec 20;33(2):357-373. doi: 10.1093/cercor/bhac071.

Abstract

The cerebral cortex undergoes rapid microstructural changes throughout the third trimester. Recently, there has been growing interest on imaging features that represent cyto/myeloarchitecture underlying intracortical myelination, cortical gray matter (GM), and its adjacent superficial whitematter (sWM). Using 92 magnetic resonance imaging scans from 78 preterm neonates, the current study used combined T1-weighted/T2-weighted (T1w/T2w) intensity ratio and diffusion tensor imaging (DTI) measurements, including fractional anisotropy (FA) and mean diffusivity (MD), to characterize the developing cyto/myeloarchitectural architecture. DTI metrics showed a linear trajectory: FA decreased in GM but increased in sWM with time; and MD decreased in both GM and sWM. Conversely, T1w/T2w measurements showed a distinctive parabolic trajectory, revealing additional cyto/myeloarchitectural signature inferred. Furthermore, the spatiotemporal courses were regionally heterogeneous: central, ventral, and temporal regions of GM and sWM exhibited faster T1w/T2w changes; anterior sWM areas exhibited faster FA increases; and central and cingulate areas in GM and sWM exhibited faster MD decreases. These results may explain cyto/myeloarchitectural processes, including dendritic arborization, synaptogenesis, glial proliferation, and radial glial cell organization and apoptosis. Finally, T1w/T2w values were significantly associated with 1-year language and cognitive outcome scores, while MD significantly decreased with intraventricular hemorrhage.

摘要

大脑皮层在整个孕晚期会经历快速的微观结构变化。最近,人们对代表皮质内髓鞘形成、皮质灰质(GM)及其相邻浅白质(sWM)下细胞/髓鞘结构的影像学特征越来越感兴趣。本研究使用了 78 名早产儿的 92 个磁共振成像扫描,采用 T1 加权/T2 加权(T1w/T2w)强度比和弥散张量成像(DTI)测量,包括各向异性分数(FA)和平均弥散度(MD),来描述发育中的细胞/髓鞘结构。DTI 指标呈线性轨迹:FA 在 GM 中降低,但在 sWM 中随时间增加;MD 在 GM 和 sWM 中均降低。相反,T1w/T2w 测量值呈独特的抛物线轨迹,揭示了推断出的额外的细胞/髓鞘结构特征。此外,时空过程存在区域异质性:GM 和 sWM 的中央、腹侧和颞叶区域 T1w/T2w 变化更快;前 sWM 区域 FA 增加更快;GM 和 sWM 的中央和扣带回区域 MD 降低更快。这些结果可以解释细胞/髓鞘结构的过程,包括树突分支、突触形成、胶质细胞增殖以及放射状胶质细胞的组织和凋亡。最后,T1w/T2w 值与 1 岁时的语言和认知结果评分显著相关,而 MD 与脑室周围出血显著相关。

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