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The use of laboratory gait analysis for understanding gait deterioration in people with multiple sclerosis

机译:使用实验室步态分析了解多发性硬化症患者的步态恶化

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摘要

Laboratory gait analysis or three-dimensional gait analysis (3DGA), which uses motion capture, force plates and electromyography (EMG), has allowed a better understanding of the underlying mechanisms of gait deterioration in patients with multiple sclerosis (PwMS). This review will summarize the current knowledge on multiple sclerosis (MS)-related changes in kinematics (angles), kinetics (forces) and electromyographic (muscle activation) patterns and how these measures can be used as markers of disease progression. We will also discuss the potential causes of slower walking in PwMS and the implications for 3DGA. Finally, we will describe new technologies and methods that will increase precision and clinical utilization of 3DGA in PwMS. Overall, 3DGA studies have shown that functionality of the ankle joint is the most affected during walking and that compensatory actions to maintain a functional speed may be insufficient in PwMS. However, altered gait patterns may be a strategy to increase stability as balance is also affected in PwMS.
机译:使用运动捕捉,测力板和肌电图(EMG)的实验室步态分析或三维步态分析(3DGA),可以更好地了解多发性硬化症(PwMS)患者步态恶化的潜在机制。这篇综述将总结关于运动学(角度),动力学(力)和肌电图(肌肉激活)模式中与多发性硬化症(MS)相关的变化的当前知识,以及如何将这些措施用作疾病进展的标志。我们还将讨论PwMS中行走缓慢的潜在原因以及对3DGA的影响。最后,我们将介绍可提高PwMS中3DGA的精度和临床利用率的新技术和方法。总体而言,3DGA研究表明,在行走过程中,踝关节的功能受到的影响最大,而在PwMS中,维持功能速度的补偿行为可能不足。但是,由于PwMS中的平衡也会受到影响,因此步态改变可能是增加稳定性的一种策略。

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