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Effect of an unstable shoe construction on lower extremity gait characteristics.

机译:不稳定的鞋子结构对下肢步态特征的影响。

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BACKGROUND: To compare kinematics, kinetics and muscle activity during standing and walking for healthy subjects using an unstable test shoe (Masai Barefoot Technology, MBT) and a stable control shoe. METHODS: Eight subjects volunteered for this study. During quiet standing, center of pressure excursion and muscle activity were determined. During walking, lower extremity kinematics, kinetics, and muscle electromyographic (EMG) signals were determined. Data were collected for the two shoe conditions after a 2week accommodation period. Statistics included repeated measures ANOVAs (alpha = 0.05) and post hoc tests where appropriate. FINDINGS: During quiet standing, the center of pressure excursion was significantly and substantially greater in the unstable compared to the control shoe. Electromyographic intensity increased in the unstable test shoe for all tested muscles, but only significantly for the tibialis anterior. During locomotion, kinematics were similar in the two shoe conditions except for the initial plantar-dorsiflexion, which showed a significant more dorsiflexed position during the first half of stance in the unstable test shoe compared to the stable control shoe. The angular impulses did not show any significant differences between the two shoe conditions for all three joints but some trends towards a reduction for the knee and hip joint. There were no significant differences in electromyographic activities between the control and the unstable shoe. However, several muscles showed some trends. INTERPRETATION: The unstable shoe produced changes and trends in kinematic, kinetic and electromyographic characteristics that seemed to be advantageous for the locomotor system. Further studies should investigate muscle strength, dynamic stability, pain reduction for arthritic knees and injury prevention for high performance athletes when using the unstable shoes.
机译:背景:为了比较健康受试者在站立和行走过程中站立,行走时的运动学,动力学和肌肉活动,使用了不稳定的测试鞋(Masai Barefoot Technology,MBT)和稳定的控制鞋。方法:八名受试者自愿参加了这项研究。在安静站立期间,确定了压力偏移和肌肉活动的中心。在行走过程中,确定了下肢运动学,动力学和肌肉肌电图(EMG)信号。在2周的适应期后,收集了这两种鞋子状况的数据。统计数据包括重复测量方差分析(alpha = 0.05)和适当的事后检验。结果:在安静站立时,与控制蹄相比,不稳定者的压力偏移中心明显更大。对于所有测试的肌肉,不稳定鞋中的肌电图强度均增加,但对于胫骨前肌而言,肌电图强度仅显着增加。在运动过程中,两种运动鞋的运动学特征都相似,除了最初的足背屈,与不稳定的对照鞋相比,在不稳定的测试鞋中,上半部的站立姿势在前半段的背屈位置明显更多。在所有三个关节的两种鞋状态之间,角冲动均未显示任何显着差异,但膝关节和髋关节有所减少。对照鞋和不稳定鞋之间的肌电活动没有显着差异。但是,几条肌肉显示出一些趋势。解释:不稳定的鞋子产生了运动,动力学和肌电图特征的变化和趋势,这似乎对运动系统有利。进一步的研究应研究使用不稳定的鞋子时的肌肉力量,动态稳定性,减轻关节炎膝盖的疼痛以及防止高水平运动员受伤。

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