首页> 外文期刊>Brain Structure and Function >Developments of sulcal pattern and subcortical structures of the forebrain in cynomolgus monkey fetuses: 7-tesla magnetic resonance imaging provides high reproducibility of gross structural changes
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Developments of sulcal pattern and subcortical structures of the forebrain in cynomolgus monkey fetuses: 7-tesla magnetic resonance imaging provides high reproducibility of gross structural changes

机译:食蟹猴胎儿前脑的沟纹和皮层下结构的发展:7特斯拉磁共振成像可提供高再现性的总体结构变化

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摘要

The aim of this study was to spatio-temporally clarify gross structural changes in the forebrain of cynomolgus monkey fetuses using 7-tesla magnetic resonance imaging (MRI). T1-weighted coronal, horizontal, and sagittal MR slices of fixed left cerebral hemispheres were obtained from one male fetus at embryonic days (EDs) 70–150. The timetable for fetal sulcation by MRI was in good agreement with that by gross observations, with a lag time of 10–30 days. A difference in detectability of some sulci seemed to be associated with the length, depth, width, and location of the sulci. Furthermore, MRI clarified the embryonic days of the emergence of the callosal (ED 70) and circular (ED 90) sulci, which remained unpredictable under gross observations. Also made visible by the present MRI were subcortical structures of the forebrain such as the caudate nucleus, globus pallidus, putamen, major subdivisions of the thalamus, and hippocampal formation. Their adult-like features were formed by ED 100, corresponding to the onset of a signal enhancement in the gray matter, which reflects neuronal maturation. The results reveal a highly reproducible level of gross structural changes in the forebrain using a high spatial 7-tesla MRI. The present MRI study clarified some changes that are difficult to demonstrate nondestructively using only gross observations, for example, the development of cerebral sulci located on the deep portions of the cortex, as well as cortical and subcortical neuronal maturation.
机译:这项研究的目的是使用7特斯拉磁共振成像(MRI)在时空上阐明食蟹猴胎儿前脑的总体结构变化。固定左脑半球的T1加权冠状,水平和矢状MR切片是从一位男性胎儿在70-150胚胎天获得的。 MRI进行胎儿硫化的时间表与总体观察结果相吻合,滞后时间为10-30天。一些沟的可检测性差异似乎与沟的长度,深度,宽度和位置有关。此外,MRI阐明了the骨(ED 70)和圆形(ED 90)沟的出现的胚胎天数,在总体观察下仍无法预测。通过本发明的MRI还可见的是前脑的皮质下结构,例如尾状核,苍白球,壳状核,丘脑的主要细分和海马结构。它们的成年特征是由ED 100形成的,对应于灰质中信号增强的开始,这反映了神经元的成熟。结果显示,使用高空间7特斯拉MRI可以高度再现水平的前脑总体结构变化。目前的MRI研究澄清了一些仅凭总体观察难以无损显示的变化,例如位于皮层深部的脑沟的发育以及皮层和皮层下神经元的成熟。

著录项

  • 来源
    《Brain Structure and Function》 |2009年第5期|469-480|共12页
  • 作者单位

    Laboratory of Anatomy Department of Physical Therapy Faculty of Medical and Health Sciences Tsukuba International University Tsuchiura Ibaraki 300-0051 Japan;

    Regulation Science Research Group National Institute of Radiological Sciences Chiba 263-8555 Japan;

    Shin Nippon Biomedical Laboratories Kagoshima 891-1394 Japan;

    Shin Nippon Biomedical Laboratories Kagoshima 891-1394 Japan;

    Department of Anatomy and Developmental Neurobiology University of Tokushima Graduate School Institute of Health Biosciences Tokushima 770-8503 Japan;

    Shin Nippon Biomedical Laboratories Kagoshima 891-1394 Japan;

    MR Molecular Imaging Team Molecular Imaging Center National Institute of Radiological Sciences Chiba 263-8555 Japan;

    Department of Anatomy and Developmental Neurobiology University of Tokushima Graduate School Institute of Health Biosciences Tokushima 770-8503 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Primate; Macaque; Phylogeny; Fetus; Brain; MRI;

    机译:灵长类;猕猴;系统发育;胎儿;脑;MRI;

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