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Assessment of whole-brain white matter by DTI in autosomal recessive spastic ataxia of charlevoix-saguenay

机译:DTI评估夏洛韦-萨格奈州常染色体隐性痉挛性共济失调全脑白质

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BACKGROUND AND PURPOSE: Extension and characteristics of WM involvement other than the brain stem remain inadequately investigated in ARSACS. The aim of this study was to investigate whole-brain WM alterations in patients with ARSACS. MATERIALS AND METHODS: Nine Turkish unrelated patients with ARSACS and 9 sex- and age-matched healthy control participants underwent neurologic examination, molecular studies, electrophysiologic studies, and DTI of the brain. TBSS was used for whole-brain voxelwise analysis of FA, AD, RD, mean diffusivity of WM. Tractographies for the CST and TPF were also computed. RESULTS: Molecular studies revealed 8 novel mutations (3 nonsense, 4 missense, and 1 frameshift insertion) and a missense variation in the SACS gene. Thick TPF displaced and compressed the CST in the pons. The TPF had increased FA, decreased RD, and increased AD, which may be attributed to hypertrophy and/or hypermyelination. Widespread decreased FA and increased RD, suggesting demyelination, was found in the limbic, commissural, and projection fibers. In addition to demyelination, CST coursing cranial and caudal to the pons also showed a marked decrease in AD, suggesting axonal degeneration. Electrophysiologic studies revealed findings that concur with demyelination and axonal involvement. CONCLUSIONS: In addition to developmental changes of the TPF and their effects on the CST in the brain stem, axonal degeneration mainly along the pyramidal tracts and widespread demyelination in WM also occur in patients with ARSACS. Widespread tissue damage may be associated with extensive loss of sacsin protein in the brain and may explain a wide range of progressive neurologic abnormalities in patients with ARSACS.
机译:背景与目的:在ARSACS中,除脑干以外的WM累及的扩展和特征仍未得到充分研究。这项研究的目的是调查ARSACS患者的全脑WM改变。材料与方法:9例土耳其无亲缘关系的ARSACS患者和9名性别和年龄相匹配的健康对照者接受了神经系统检查,分子研究,电生理研究和脑DTI。 TBSS用于FA,AD,RD,WM的平均扩散率的全脑体素分析。还计算了CST和TPF的术式。结果:分子研究显示SACS基因有8个新突变(3个无意义,4个错义和1个移码插入)和一个错义变异。厚厚的TPF移位并压缩了桥墩中的CST。 TPF的FA升高,RD降低,AD升高,这可能归因于肥大和/或髓鞘过多。在边缘,连合和投射纤维中普遍发现FA减少和RD增加,表明脱髓鞘。除了脱髓鞘外,CST刺激脑桥和尾脑到脑桥也显示AD明显降低,提示轴突变性。电生理研究揭示了与脱髓鞘和轴突受累一致的发现。结论:ARSACS患者除了TPF的发育变化及其对脑干CST的影响外,主要沿锥体束的轴突变性和WM中广泛的脱髓鞘也发生。广泛的组织损伤可能与大脑中糖蛋白的广泛丧失有关,并可能解释了ARSACS患者广泛的进行性神经系统异常。

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