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How genetics affects the brain to produce higher-level dysfunctions in myotonic dystrophy type 1

机译:遗传学如何影响大脑在1型强直性营养不良中产生更高水平的功能障碍

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摘要

Myotonic dystrophy type 1 (DM1) is a multisystemic disorder dominated by muscular impairment and brain dysfunctions. Although brain damage has previouslybeen demonstrated in DM1, its associations with the genetics and clinicaleuropsychological features of the disease are controversial. This study assessed the differential role of gray matter (GM) and white matter (WM) damage in determining higher-level dysfunctions in DM1. Ten patients with genetically confirmed DM1 and 16 healthy matched controls entered the study. The patients underwent a neuropsychological assessment and quantification of CTG triplet expansion. All the subjects underwent MR scanning at 3T, with studies including T1-weighted volumes and diffusion-weighted images. Voxel-based morphometry and tractbased spatial statistics were used for unbiased quantification of regional GM atrophy and WM integrity. The DM1 patients showed widespread involvement of both tissues. The extent of the damage correlated with CTG triplet expansion and cognition. This study supports the idea that genetic abnormalities in DM1mainly target the WM, but GM involvement is also crucial in determining the clinical characteristics of DM1.
机译:1型强直性营养不良(DM1)是一种多系统性疾病,主要由肌肉功能障碍和脑功能障碍所致。尽管先前已经在DM1中证明了脑损伤,但它与该疾病的遗传学和临床/神经心理特征的关系尚存争议。这项研究评估了灰质(GM)和白质(WM)损伤在确定DM1中更高水平的功能障碍中的不同作用。十名经遗传学证实为DM1的患者和16名健康匹配的对照进入研究。患者接受了神经心理学评估和CTG三联体扩张的量化。所有受试者均在3T接受MR扫描,研究包括T1加权体积和弥散加权图像。基于体素的形态计量学和基于道的空间统计数据用于区域GM萎缩和WM完整性的无偏量化。 DM1患者显示出两个组织的广泛侵犯。损害的程度与CTG三联体的扩张和认知有关。这项研究支持DM1基因异常主要针对WM的观点,但GM的参与对确定DM1的临床特征也至关重要。

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