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定量磁共振成像显示多发性硬化症患者穹窿和扣带束存在异常。

Quantitative MRI demonstrates abnormality of the fornix and cingulum in multiple sclerosis.

作者信息

Syc Stephanie B, Harrison Daniel M, Saidha Shiv, Seigo Michaela, Calabresi Peter A, Reich Daniel S

机构信息

Department of Neurology, Johns Hopkins University, School of Medicine, Baltimore, MD 21287, USA.

出版信息

Mult Scler Int. 2013;2013:838719. doi: 10.1155/2013/838719. Epub 2013 Feb 16.

Abstract

Objective. To characterize MR signal changes associated with tissue damage in the fornix and cingulum in multiple sclerosis (MS) using quantitative MRI measures and to determine associations with cognitive dysfunction. Background. The fornix and cingulum are white-matter bundles that carry information related to cognition. While cognitive dysfunction is reported in 40-60% of MS patients, the neuroanatomical correlates of cognitive impairment remain incompletely understood. Methods. The cingulum, pillars of the fornix, and corticospinal tract were segmented by fiber tracking via diffusion tensor imaging. Average tract-specific fractional anisotropy (FA), mean diffusivity (MD), and magnetization transfer ratio (MTR) were compared in MS cases and healthy volunteers. Associations with clinical measures and neuropsychological tests were derived by multivariate linear regression. Results. Fornix FA (P = 0.004) and MTR (P = 0.005) were decreased, and fornix MD (P < 0.001) and cingulum MD (P < 0.001) increased, in MS cases (n = 101) relative to healthy volunteers (n = 16) after adjustment for age and sex. Lower fornix FA and MTR, and higher fornix MD and λ

摘要

目的。使用定量磁共振成像测量来描述多发性硬化症(MS)中穹窿和扣带回与组织损伤相关的磁共振信号变化,并确定其与认知功能障碍的关联。背景。穹窿和扣带回是携带与认知相关信息的白质束。虽然40%至60%的MS患者存在认知功能障碍,但认知障碍的神经解剖学相关性仍未完全明确。方法。通过扩散张量成像的纤维追踪对扣带回、穹窿柱和皮质脊髓束进行分割。比较MS患者和健康志愿者中各束特异性平均各向异性分数(FA)、平均扩散率(MD)和磁化传递率(MTR)。通过多元线性回归得出与临床指标和神经心理学测试的关联。结果。在根据年龄和性别进行调整后,与健康志愿者(n = 16)相比,MS患者(n = 101)的穹窿FA(P = 0.004)和MTR(P = 0.005)降低,穹窿MD(P < 0.001)和扣带回MD(P < 0.001)升高。较低的穹窿FA和MTR,以及较高的穹窿MD和λ

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c653/3586491/ad9da19fcf2b/MSI2013-838719.001.jpg

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