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多发性硬化症患者的行走能力、灵巧性和认知功能障碍与不同区域小脑灰质丢失有关。

Impairments in Walking Ability, Dexterity, and Cognitive Function in Multiple Sclerosis Are Associated with Different Regional Cerebellar Gray Matter Loss.

机构信息

Department of Neurology, University Medicine of Greifswald, Ferdinand-Sauerbruch-Straße, 17475, Greifswald, Germany.

Functional Imaging, Institute for Diagnostic Radiology and Neuroradiology, University Medicine of Greifswald, Greifswald, Germany.

出版信息

Cerebellum. 2017 Dec;16(5-6):945-950. doi: 10.1007/s12311-017-0871-8.

Abstract

Both histological and neuroimaging studies highlight the role of the cerebellum in multiple sclerosis (MS). There is at least some evidence for associations of cerebellar gray matter (GM) loss with motor and cognitive ability. We therefore correlated motor and cognitive ability scores (the multiple sclerosis functional composite MSFC) with regional cerebellar GM volumes. We used voxel-based morphometry (VBM) to assess the regional GM volume loss in a cohort of 45 MS patients. For the regression analysis, we used the clinical subscores of the multiple sclerosis functional composite (25-ft walk test (T25FW), nine-hole peg test (9HPT), paced auditory serial addition task (PASAT)). Decreased GM in distinct cerebellar areas was associated with different subscores of the MSFC in Larsell's lobule VI with the T25FW (t = 5.16), in lobule IX with the 9HPT (t = 3.95), and in lobule IX with the PASAT (t = 4.81). Regional volume decrease in distinct cerebellar areas involved in motor and cognitive domains were associated with clinical impairment in these fields. Our data confirm the relationship between cerebellar GM volume loss and disability, extending the knowledge in the functional neuroanatomical perspective.

摘要

组织学和神经影像学研究都强调了小脑在多发性硬化症(MS)中的作用。至少有一些证据表明小脑灰质(GM)的损失与运动和认知能力有关。因此,我们将运动和认知能力评分(多发性硬化症功能综合评分 MSFC)与区域小脑 GM 体积相关联。我们使用基于体素的形态测量法(VBM)评估了 45 名 MS 患者的队列中的区域 GM 体积损失。对于回归分析,我们使用多发性硬化症功能综合评分的临床子评分(25 英尺步行测试(T25FW),九孔钉测试(9HPT),定速听觉序列加法任务(PASAT))。在 Larsell 的 VI 小叶中与 T25FW(t=5.16),在 IX 小叶中与 9HPT(t=3.95),在 IX 小叶中与 PASAT(t=4.81)与 MSFC 的不同子评分相关的小脑区域 GM 减少。涉及运动和认知领域的不同小脑区域的区域体积减少与这些领域的临床损伤有关。我们的数据证实了小脑 GM 体积损失与残疾之间的关系,从功能神经解剖学的角度扩展了知识。

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