扩散张量成像评估猫甘露甘露病模型脑灰质和白质异常

M. Kumar, J. Duda, Sea Young Yoon, J. Bagel, P. O'donnell, C. Vite, S. Pickup, J. Gee, J. Wolfe, Harish Poptani
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引用次数: 13

摘要

甘露甘露病(AMD)是一种常染色体隐性遗传的溶酶体贮积性疾病,影响大脑功能和结构。我们对amd影响的猫的大脑进行了离体和体内弥散张量成像(DTI)来评估灰质和白质异常。采用多图谱方法生成脑模板来处理离体DTI数据。采用概率标记法测量离体DTI灰质和白质区域的分数各向异性(FA)、平均扩散率、轴向扩散率和径向扩散率值。对离体和体内DTI进行了灰质(额叶皮质、扣带回、尾状核、海马、丘脑和枕叶皮质)和白质(胼胝体、皮质脊髓束、脑蒂、外囊和内囊)各区域的区域分析。离体DTI显示,与对照组相比,amd感染猫的灰质和白质区域的FA显著减少。与对照组相比,受amd影响的猫体内DTI的FA值也显著降低,所有白质区域的FA值都降低。我们还从离体和体内DTI数据中观察到AMD猫的各种灰质和白质区域的轴向和径向扩散系数值显着增加。影像学结果与组织病理学分析相关,表明DTI研究可以通过评估白质和灰质的微结构异常进一步帮助表征AMD。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Diffusion Tensor Imaging for Assessing Brain Gray and White Matter Abnormalities in a Feline Model of &agr;-Mannosidosis
&agr;-Mannosidosis (AMD) is an autosomal recessively inherited lysosomal storage disorder affecting brain function and structure. We performed ex vivo and in vivo diffusion tensor imaging (DTI) on the brains of AMD-affected cats to assess gray and white matter abnormalities. A multi-atlas approach was used to generate a brain template to process the ex vivo DTI data. The probabilistic label method was used to measure fractional anisotropy (FA), mean diffusivity, axial diffusivity, and radial diffusivity values from gray and white matter regions from ex vivo DTI. Regional analysis from various regions of the gray matter (frontal cortex, cingulate gyrus, caudate nucleus, hippocampus, thalamus, and occipital cortex), and white matter (corpus callosum, corticospinal tract, cerebral peduncle, external and internal capsule) was also performed on both ex vivo and in vivo DTI. Ex vivo DTI revealed significantly reduced FA from both gray and white matter regions in AMD-affected cats compared to controls. Significantly reduced FA was also observed from in vivo DTI of AMD-affected cats compared to controls, with lower FA values observed in all white matter regions. We also observed significantly increased axial and radial diffusivity values in various gray and white matter regions in AMD cats from both ex vivo and in vivo DTI data. Imaging findings were correlated with histopathologic analyses suggesting that DTI studies can further aid in the characterization of AMD by assessing the microstructural abnormalities in both white and gray matter.
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