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Corpus Callosum Microstructural Changes Correlate with Cognitive Dysfunction in Early Stages of Relapsing-Remitting Multiple Sclerosis: Axial and Radial Diffusivities Approach

机译:复发性多发性硬化早期的Early体微结构变化与认知功能障碍相关:轴向和径向扩散方法

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The corpus callosum is the largest fiber bundle in the central nervous system and it takes part in several cognitive pathways. It can be affected by multiple sclerosis (MS) early in the disease. DTI is capable of infering the microstructural organization of the white matter. The vectorial analysis of the DTI offers the more specific indices of axial diffusivity (AD) and radial diffusivity (RD), which have shown to be useful to discriminate myelin damage from axon loss, respectively. This study presents DTI results (mean diffusivity (MD), fractional anisotropy (FA), RD, and AD) of 23 relapsing-remitting MS patients and its correlation with cognitive performance. There were 47.8% of cognitive impaired patients (MS CI). We found signs of demyelination, reflected by increased RD, and incipient axon loss, reflected by AD increase, which was slightly higher in the MS CI. The cognitive changes correlated with the DTI parameters, suggesting that loss of complexity in CC connections can impair neural conduction. Thus, cognitive impairment can be related to callosal disconnection, and DTI can be a promising tool to evaluate those changes.
机译:call体是中枢神经系统中最大的纤维束,它参与了几种认知途径。它可以在疾病早期受到多发性硬化症(MS)的影响。 DTI能够推断白质的微观组织。 DTI的矢量分析提供了更具体的轴向扩散系数(AD)和径向扩散系数(RD)的指标,这些指标已分别用于区分髓鞘损伤和轴突损失。这项研究显示了23位复发缓解型MS患者的DTI结果(平均扩散率(MD),分数各向异性(FA),RD和AD)及其与认知能力的关系。有47.8%的认知障碍患者(MS CI)。我们发现脱髓鞘的迹象反映为RD升高,而早期轴突丢失则反映为AD升高,这在MS CI中略高。认知变化与DTI参数相关,表明CC连接复杂性的丧失会损害神经传导。因此,认知障碍可能与call断开有关,而DTI可能是评估这些变化的有前途的工具。

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