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脱髓鞘模型中定量 MRI 与超微结构检查。

Quantitative MRI and ultrastructural examination of the cuprizone mouse model of demyelination.

机构信息

Department of Physics and Astronomy, University of Manitoba, Winnipeg, MB, Canada; Department of Radiology, University of Manitoba, Winnipeg, MB, Canada.

出版信息

NMR Biomed. 2013 Nov;26(11):1562-81. doi: 10.1002/nbm.2992. Epub 2013 Aug 13.

Abstract

The cuprizone mouse model of demyelination was used to investigate the influence that white matter changes have on different magnetic resonance imaging results. In vivo T2 -weighted and magnetization transfer images (MTIs) were acquired weekly in control (n = 5) and cuprizone-fed (n = 5) mice, with significant increases in signal intensity in T2 -weighted images (p < 0.001) and lower magnetization transfer ratio (p < 0.001) in the corpus callosum of the cuprizone-fed mice starting at 3 weeks and peaking at 4 and 5 weeks, respectively. Diffusion tensor imaging (DTI), quantitative MTI (qMTI), and T1/T2 measurements were used to analyze freshly excised tissue after 6 weeks of cuprizone administration. In multicomponent T2 analysis with 10 ms echo spacing, there was no visible myelin water component associated with the short T2 value. Quantitative MTI metrics showed significant differences in the corpus callosum and external capsule of the cuprizone-fed mice, similar to previous studies of multiple sclerosis in humans and animal models of demyelination. Fractional anisotropy was significantly lower and mean, axial, and radial diffusivity were significantly higher in the cuprizone-fed mice. Cellular distributions measured in electron micrographs of the corpus callosum correlated strongly to several different quantitative MRI metrics. The largest Spearman correlation coefficient varied depending on cellular type: T1 versus the myelinated axon fraction (ρ = -0.90), the bound pool fraction (ƒ) versus the myelin sheath fraction (ρ = 0.93), and axial diffusivity versus the non-myelinated cell fraction (ρ = 0.92). Using Pearson's correlation coefficient, ƒ was strongly correlated to the myelin sheath fraction (r = 0.98) with a linear equation predicting myelin content (5.37ƒ - 0.25). Of the calculated MRI metrics, ƒ was the strongest indicator of myelin content, while longitudinal relaxation rates and diffusivity measurements were the strongest indicators of changes in tissue structure.

摘要

使用脱髓鞘的 Cuprizone 小鼠模型来研究白质变化对不同磁共振成像结果的影响。在对照(n = 5)和 Cuprizone 喂养(n = 5)小鼠中每周进行体内 T2 加权和磁化传递图像(MTI)采集,Cuprizone 喂养小鼠的 T2 加权图像信号强度显著增加(p < 0.001),而磁化传递率降低(p < 0.001),始于第 3 周,分别在第 4 和第 5 周达到峰值。弥散张量成像(DTI)、定量 MTI(qMTI)和 T1/T2 测量用于分析 Cuprizone 给药 6 周后新鲜取出的组织。在具有 10 ms 回波间隔的多分量 T2 分析中,没有可见的与短 T2 值相关的髓鞘水成分。定量 MTI 指标显示,Cuprizone 喂养小鼠的胼胝体和外囊存在显著差异,与人类多发性硬化症的先前研究和脱髓鞘动物模型相似。分数各向异性明显降低,平均、轴向和径向弥散度明显升高。胼胝体的电子显微镜图像测量的细胞分布与几种不同的定量 MRI 指标密切相关。最大的斯皮尔曼相关系数因细胞类型而异:T1 与有髓轴突分数(ρ=-0.90)、结合池分数(ƒ)与髓鞘分数(ρ=0.93)以及轴向弥散度与无髓鞘细胞分数(ρ=0.92)。使用 Pearson 相关系数,ƒ与髓鞘分数呈强相关(r=0.98),具有预测髓鞘含量的线性方程(5.37ƒ-0.25)。在所计算的 MRI 指标中,ƒ是髓鞘含量的最强指标,而纵向弛豫率和弥散度测量是组织结构变化的最强指标。

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