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支撑基础约束对小脑性共济失调患者其他生物力学特征的影响。

Effect of Restraining the Base of Support on the Other Biomechanical Features in Patients with Cerebellar Ataxia.

机构信息

Fondazione Don Carlo Gnocchi, Piazzale Morandi 6, 20121, Milan, Italy.

Department of Medical and Surgical Sciences and Biotechnologies, Sapienza, Polo Pontino, University of Rome, via Franco Faggiana 1668, 04100, Latina, Italy.

出版信息

Cerebellum. 2018 Jun;17(3):264-275. doi: 10.1007/s12311-017-0897-y.

Abstract

This study aimed to analyze the biomechanical consequences of reducing the base of support in patients with ataxia. Specifically, we evaluated the spatio-temporal parameters, upper- and lower-body kinematics, muscle co-activation, and energy recovery and expenditure. The gaits of 13 patients were recorded using a motion analysis system in unperturbed and perturbed walking conditions. In the latter condition, patients had to walk using the same step width and speed of healthy controls. The perturbed walking condition featured reduced gait speed, step length, hip and knee range of motion, and energy recovery and increased double support duration, gait variability, trunk oscillation, and ankle joint muscle co-activation. Narrowing the base of support increased gait instability (e.g., gait variability and trunk oscillations) and induced patients to further use alternative compensatory mechanisms to maintain dynamic balance at the expense of a reduced ability to recover mechanical energy. A widened step width gait is a global strategy employed by patients to increase dynamic stability, reduce the need for further compensatory mechanisms, and thus recover mechanical energy. Our findings suggest that rehabilitative treatment should more specifically focus on step width training.

摘要

本研究旨在分析减小共济失调患者支撑基础对生物力学的影响。具体而言,我们评估了时空参数、上下肢体运动学、肌肉协同激活以及能量回收和消耗。通过运动分析系统,记录了 13 名患者在未受干扰和受干扰行走条件下的步态。在后一种情况下,患者必须以与健康对照组相同的步宽和速度行走。受干扰的行走条件表现为步速、步长、髋关节和膝关节活动范围以及能量回收降低,而双支撑持续时间、步态变异性、躯干摆动和踝关节肌肉协同激活增加。支撑基础变窄增加了步态不稳定(例如,步态变异性和躯干摆动),并促使患者进一步使用替代补偿机制,以牺牲恢复机械能的能力来维持动态平衡。较宽的步宽步态是患者采用的一种全局策略,用于增加动态稳定性,减少对进一步补偿机制的需求,从而恢复机械能。我们的研究结果表明,康复治疗应更具体地侧重于步宽训练。

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