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从出生到 48 月龄的食蟹猴早期发育的大脑纵向图谱

Longitudinal brain atlases of early developing cynomolgus macaques from birth to 48 months of age.

机构信息

Department of Radiology and BRIC, University of North Carolina Chapel Hill, USA; Guangdong Provincial Key Laboratory of Medical Image Processing, School of Biomedical Engineering, Southern Medical University, Guangzhou, China.

State Key Laboratory of Primate Biomedical Research, Institute of Primate Translational Medicine, Kunming University of Science and Technology, Kunming, China; Yunnan Key Laboratory of Primate Biomedical Research, Kunming, China.

出版信息

Neuroimage. 2022 Feb 15;247:118799. doi: 10.1016/j.neuroimage.2021.118799. Epub 2021 Dec 9.

Abstract

Longitudinal brain imaging atlases with densely sampled time-points and ancillary anatomical information are of fundamental importance in studying early developmental characteristics of human and non-human primate brains during infancy, which feature extremely dynamic imaging appearance, brain shape and size. However, for non-human primates, which are highly valuable animal models for understanding human brains, the existing brain atlases are mainly developed based on adults or adolescents, denoting a notable lack of temporally densely-sampled atlases covering the dynamic early brain development. To fill this critical gap, in this paper, we construct a comprehensive set of longitudinal brain atlases and associated tissue probability maps (gray matter, white matter, and cerebrospinal fluid) with totally 12 time-points from birth to 4 years of age (i.e., 1, 2, 3, 4, 5, 6, 9, 12, 18, 24, 36, and 48 months of age) based on 175 longitudinal structural MRI scans from 39 typically-developing cynomolgus macaques, by leveraging state-of-the-art computational techniques tailored for early developing brains. Furthermore, to facilitate region-based analysis using our atlases, we also provide two popular hierarchy parcellations, i.e., cortical hierarchy maps (6 levels) and subcortical hierarchy maps (6 levels), on our longitudinal macaque brain atlases. These early developing atlases, which have the densest time-points during infancy (to the best of our knowledge), will greatly facilitate the studies of macaque brain development.

摘要

具有密集采样时间点和辅助解剖信息的纵向脑成像图谱对于研究人类和非人灵长类动物在婴儿期大脑的早期发育特征至关重要,因为这些特征具有非常动态的成像表现、脑形状和大小。然而,对于非人类灵长类动物来说,它们是理解人类大脑的非常有价值的动物模型,现有的大脑图谱主要是基于成年人或青少年开发的,这表明在时间上缺乏密集采样的图谱来涵盖大脑的动态早期发育。为了填补这一关键空白,在本文中,我们构建了一套全面的纵向脑图谱和相关的组织概率图谱(灰质、白质和脑脊液),总共包含 12 个时间点,从出生到 4 岁(即 1、2、3、4、5、6、9、12、18、24、36 和 48 个月),基于 39 只正常发育的食蟹猴的 175 个纵向结构 MRI 扫描,利用专门针对早期发育大脑的最先进计算技术。此外,为了方便使用我们的图谱进行基于区域的分析,我们还在纵向猕猴脑图谱上提供了两种流行的层次分割,即皮质层次图(6 个层次)和皮质下层次图(6 个层次)。这些在婴儿期具有最密集时间点(据我们所知)的早期发育图谱将极大地促进猕猴大脑发育的研究。

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