Lerch Jason P, Carroll Jeffrey B, Spring Shoshana, Bertram Lisa N, Schwab Claudia, Hayden Michael R, Henkelman R Mark
Mouse Imaging Centre (MICe), Hospital for Sick Children, 555 University Ave., Toronto, ON, Canada M5G 1X8.
Neuroimage. 2008 Jan 1;39(1):32-9. doi: 10.1016/j.neuroimage.2007.08.033. Epub 2007 Aug 31.
The YAC128 mouse recapitulates many of the clinical features of Huntington disease (HD), including selective neuropathology with neuronal loss. Here we investigate whether differences in neuroanatomy could be detected using high-resolution magnetic resonance (MR) imaging earlier than the previously defined 9-month age of onset of striatal neuropathology. The striatum is significantly decreased in volume (3.4%, p<0.02) at 8 months of age. A subset of the brains was also analyzed using stereology, and the MR measures were found to be more robust at separating the two groups of mice. Striatal degeneration was found to be asymmetric, with the dorsal and lateral aspects of the striatum being most affected. Non-striatal changes in neuroanatomy were also investigated, revealing regions of expansion as well as atrophy. Our findings suggest that MR imaging can be used to detect and monitor subtle anatomical differences throughout the whole brain and at early time points in the YAC128 mouse-model of HD.
YAC128小鼠再现了亨廷顿舞蹈症(HD)的许多临床特征,包括伴有神经元损失的选择性神经病理学特征。在此,我们研究能否通过高分辨率磁共振(MR)成像在早于之前定义的纹状体神经病理学发病年龄9个月时检测到神经解剖学差异。在8个月大时,纹状体体积显著减小(3.4%,p<0.02)。还使用体视学方法对一部分大脑进行了分析,发现MR测量在区分两组小鼠方面更具稳健性。发现纹状体变性是不对称的,纹状体的背侧和外侧部分受影响最大。还研究了神经解剖学的非纹状体变化,发现了扩大和萎缩区域。我们的研究结果表明,MR成像可用于检测和监测HD的YAC128小鼠模型全脑在早期时间点的细微解剖学差异。