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原发性书写痉挛患者运动前区皮质和基底节之间的白质完整性受损。

Impaired white matter integrity between premotor cortex and basal ganglia in writer's cramp.

机构信息

Department of Neurology, Klinikum rechts der Isar, Technische Universität Muenchen, Muenchen, Germany.

Department of Neuroradiology, Klinikum rechts der Isar, Technische Universität Muenchen, Muenchen, Germany.

出版信息

Brain Behav. 2018 Oct;8(10):e01111. doi: 10.1002/brb3.1111. Epub 2018 Sep 21.

Abstract

INTRODUCTION

Writer's cramp (WC) as a focal hand dystonia is characterized by abnormal postures of the hand during writing. Impaired inhibition and maladaptive plasticity in circuits linking the basal ganglia and sensorimotor cortices have been described. In particular, a dysfunction of lateral premotor cortices has been associated with impaired motor control in WC. We applied diffusion tensor imaging to identify changes in white matter connectivity between premotor regions and important cortical and subcortical structures.

METHODS

Whole brain white matter tracts were reconstructed in 18 right-handed WC patients and 18 matched controls, using probabilistic fiber tracking. We restricted our analyses to left-hemispheric fibers between the middle frontal gyrus (MFG) and basal ganglia, thalamus, primary motor, and sensory cortex. Diffusion parameters (fractional anisotropy and linear anisotropy) were compared between both groups.

RESULTS

A significant reduction in fractional anisotropy values was shown for patients (mean ± SD: 0.37 ± 0.02) vs. controls (0.39 ± 0.03) regarding fibers between the left-sided MFG and the putamen (p < 0.05). The same applied for linear anisotropy values in this connection (p < 0.05).

CONCLUSIONS

Our results suggest an impaired structural connectivity between the left-hemispheric MFG and putamen with a loss of equally aligned fibers in WC patients. This could reflect a structural basis for functional findings interpreted as altered inhibition and plasticity, both within the premotor cortex and the basal ganglia, that at last lead to the clinical symptoms of WC.

摘要

简介

书写痉挛(WC)作为一种局灶性手部肌张力障碍,其特征是书写时手部出现异常姿势。已经描述了连接基底节和感觉运动皮层的回路中存在抑制受损和适应不良的可塑性。特别是,外侧运动前皮质的功能障碍与 WC 中运动控制受损有关。我们应用弥散张量成像来识别运动前区与重要皮质和皮质下结构之间的白质连接的变化。

方法

在 18 名右利手 WC 患者和 18 名匹配的对照者中,使用概率纤维追踪法重建全脑白质束。我们将分析仅限于左半球中间额回(MFG)与基底节、丘脑、初级运动和感觉皮层之间的纤维。比较两组之间的弥散参数(各向异性分数和线性各向异性)。

结果

与对照组(0.39±0.03)相比,患者(均值±标准差:0.37±0.02)在左侧 MFG 与壳核之间的纤维中,各向异性分数值显著降低(p<0.05)。在该连接中,线性各向异性值也同样适用(p<0.05)。

结论

我们的结果表明,WC 患者左侧 MFG 与壳核之间的结构连接受损,均匀排列的纤维丧失。这可能反映了功能发现的结构基础,这些发现被解释为运动前皮质和基底节内的抑制和可塑性改变,最终导致 WC 的临床症状。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/632b/6192408/939c2e3e9f17/BRB3-8-e01111-g001.jpg

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