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9.4T下恒河猴年龄相关脑皮质下易感性改变的超高分辨率MRI研究

Ultra-High-Resolution MRI Study of Age-Related Brain Subcortical Susceptibility Alteration in Rhesus Monkeys at 9.4 T.

作者信息

Wen Qingqing, Yang Hongyi, Li Jiali, Zhang Jin, Tong Haiyang, Ye Qiong, Zhong Kai

机构信息

High Magnetic Field Laboratory, Hefei Institutes of Physical Science, Chinese Academy of Sciences, Hefei, China.

University of Science and Technology of China, Hefei, China.

出版信息

Front Aging Neurosci. 2020 Aug 14;12:259. doi: 10.3389/fnagi.2020.00259. eCollection 2020.

Abstract

Iron concentration in the brain has been suggested as a biomarker of pathologic neurodegeneration. However, the iron concentration changes in healthy aging as well. This study aimed to quantify the age-related changes in iron concentration in the gray matter of healthy rhesus monkeys using quantitative susceptibility mapping (QSM). Three-dimensional gradient-echo images of 16 female rhesus monkey brains aged between 2 and 26 years were acquired . The susceptibilities in the brain regions of the caudate nucleus (Cd), putamen (Pt), globus pallidus (Gp), and substantia nigra (Sn) were analyzed. The susceptibility varied across different brain regions, with higher levels in the Gp and Sn. Susceptibilities in all analyzed brain regions were linearly correlated with age, yet the plateau period as observed in human brains was absent. This is the first report of the age-related variability of susceptibility in the deep gray matter of rhesus monkey brains at 9.4 T, with an isotropic resolution of 150 μm. Awareness of age-related changes in susceptibility is vital for the establishment of a baseline to facilitate the differentiation of pathologic neurodegeneration from healthy aging in non-human primate studies.

摘要

大脑中的铁浓度已被认为是病理性神经退行性变的生物标志物。然而,铁浓度在健康衰老过程中也会发生变化。本研究旨在使用定量磁化率成像(QSM)来量化健康恒河猴灰质中铁浓度与年龄相关的变化。采集了16只年龄在2至26岁之间的雌性恒河猴大脑的三维梯度回波图像。分析了尾状核(Cd)、壳核(Pt)、苍白球(Gp)和黑质(Sn)等脑区的磁化率。磁化率在不同脑区有所不同,Gp和Sn中的水平较高。所有分析脑区的磁化率均与年龄呈线性相关,但未观察到人类大脑中出现的平稳期。这是关于9.4 T下恒河猴大脑深部灰质磁化率与年龄相关变异性的首次报告,各向同性分辨率为150μm。了解磁化率与年龄相关的变化对于建立基线至关重要,有助于在非人灵长类动物研究中区分病理性神经退行性变与健康衰老。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/04bc/7461968/0b47f9c43b01/fnagi-12-00259-g0001.jpg

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