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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >MRI analysis of cerebellar and vestibular developmental phenotypes in Gbx2 conditional knockout mice
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MRI analysis of cerebellar and vestibular developmental phenotypes in Gbx2 conditional knockout mice

机译:Gbx2条件性基因敲除小鼠小脑和前庭发育表型的MRI分析

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Purpose Our aim in this study was to apply three-dimensional MRI methods to analyze early postnatal morphological phenotypes in a Gbx2 conditional knockout (Gbx2-CKO) mouse that has variable midline deletions in the central cerebellum, reminiscent of many human cerebellar hypoplasia syndromes. Methods In vivo three-dimensional manganese-enhanced MRI at 100-μm isotropic resolution was used to visualize mouse brains between postnatal days 3 and 11, when cerebellum morphology undergoes dramatic changes. Deformation-based morphometry and volumetric analysis of manganese-enhanced MRI images were used to, respectively, detect and quantify morphological phenotypes in Gbx2-CKO mice. Ex vivo micro-MRI was performed after perfusion-fixation with supplemented gadolinium for higher resolution (50-μm) analysis. Results In vivo manganese-enhanced MRI and deformation-based morphometry correctly identified known cerebellar defects in Gbx2-CKO mice, and novel phenotypes were discovered in the deep cerebellar nuclei and the vestibulo-cerebellum, both validated using histology. Ex vivo micro-MRI revealed subtle phenotypes in both the vestibulo-cerebellum and the vestibulo-cochlear organ, providing an interesting example of complementary phenotypes in a sensory organ and its associated brain region. Conclusion These results show the potential of three-dimensional MRI for detecting and analyzing developmental defects in mouse models of neurodevelopmental diseases. Magn Reson Med 70:1707-1717, 2013.
机译:目的我们在这项研究中的目的是应用三维MRI方法分析Gbx2条件性基因敲除(Gbx2-CKO)小鼠的早期产后形态表型,该小鼠在小脑中央具有可变的中线缺失,让人联想到许多人类小脑发育不全综合征。方法采用100微米各向同性分辨率的体内三维锰增强MRI观察小脑形态发生急剧变化的出生后3至11天之间的小鼠大脑。锰增强MRI图像的基于变形的形态学和体积分析分别用于检测和定量Gbx2-CKO小鼠的形态学表型。灌注固定后用补充g进行离体显微MRI,以进行更高分辨率(50-μm)分析。结果体内锰增强MRI和基于变形的形态计量学正确识别了Gbx2-CKO小鼠中的已知小脑缺陷,并且在小脑深核和前庭小脑中发现了新的表型,均已通过组织学验证。体外显微核磁共振显示前庭小脑和前庭耳蜗器官都有细微的表型,为感官器官及其相关脑区域的互补表型提供了有趣的例子。结论这些结果表明三维MRI在检测和分析神经发育疾病小鼠模型中的发育缺陷方面的潜力。 Magn Reson Med 70:1707-1717,2013年。

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