首页> 美国卫生研究院文献>The Journal of Neuroscience >In Vivo Magnetic Resonance Imaging and Semiautomated Image Analysis Extend the Brain Phenotype for cdf/cdf Mice
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In Vivo Magnetic Resonance Imaging and Semiautomated Image Analysis Extend the Brain Phenotype for cdf/cdf Mice

机译:体内磁共振成像和半自动图像分析扩展了cdf / cdf小鼠的脑表型

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摘要

Magnetic resonance imaging and computer image analysis in human clinical studies effectively identify abnormal neuroanatomy in disease populations. As more mouse models of neurological disorders are discovered, such an approach may prove useful for translational studies. Here, we demonstrate the effectiveness of a similar strategy for mouse neuroscience studies by phenotyping mice with the cerebellar deficient folia (cdf) mutation. Using in vivo multiple-mouse magnetic resonance imaging for increased throughput, we imaged groups of cdf mutant, heterozygous, and wild-type mice and made an atlas-based segmentation of the structures in 15 individual brains. We then performed computer automated volume measurements on the structures. We found a reduced cerebellar volume in the cdf mutants, which was expected, but we also found a new phenotype in the inferior colliculus and the olfactory bulbs. Subsequent local histology revealed additional cytoarchitectural abnormalities in the olfactory bulbs. This demonstrates the utility of anatomical magnetic resonance imaging and semiautomated image analysis for detecting abnormal neuroarchitecture in mutant mice.
机译:人类临床研究中的磁共振成像和计算机图像分析可有效识别疾病人群中异常的神经解剖结构。随着发现更多的神经系统疾病小鼠模型,这种方法可能对转化研究有用。在这里,我们通过对小脑缺陷叶(cdf)突变的小鼠进行表型鉴定,证明了类似策略对小鼠神经科学研究的有效性。使用体内多小鼠磁共振成像来提高通量,我们对cdf突变,杂合和野生型小鼠进行了成像,并在15个单独的大脑中进行了基于图集的结构分割。然后,我们对结构进行了计算机自动体积测量。我们发现cdf突变体的小脑体积减少,这是预料之中的,但我们还在下丘和嗅球中发现了新的表型。随后的局部组织学检查发现嗅球中还有其他细胞结构异常。这证明了解剖磁共振成像和半自动图像分析在突变小鼠中检测异常神经结构的实用性。

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