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Kinematic and kinetic characteristics of Masai Barefoot Technology footwear

机译:Masai Barefoot Technology鞋的运动学和动力学特性

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摘要

The Masai Barefoot Technology (MBT) shoe was developed as a walking device to improve gait stability and reduce the joint load. Kinematic changes with MBT shoes have been reported; however, kinetic characteristics with MBT shoes have not been adequately assessed. The purpose of this study was to investigate the immediate effects of using MBT footwear on the kinetic and kinematic changes in the lower extremity in healthy males. Fourteen healthy male subjects (mean age: 25.6. ±. 5.1 years) underwent three-dimensional gait analysis. Ground reaction forces (GRF) during the shock absorption phase were significantly decreased with MBT shoes compared with stable shoes. Gait with the MBT shoes showed significantly decreased knee extension angle in the early stance phase, a decreased hip extension angle, and an increased ankle dorsiflexion angle in the late stance phase. The peak value of the ankle planter moment, ankle negative power, and vertical component of the GRF significantly decreased with MBT shoes in the late stance phase compared with stable shoes. Therefore, MBT shoes could assist with shock absorption in the early stance phase and maintain the progression force while reducing joint moment and power. The results of this study suggest that MBT shoes might be effective to improve shock absorption, increase knee extensor muscle activity, and assist ankle push-off.
机译:Masai Barefoot Technology(MBT)鞋是一种步行设备,旨在提高步态稳定性并减少关节负荷。据报道,MBT鞋发生了运动变化;但是,MBT鞋的动力学特性尚未得到充分评估。这项研究的目的是调查使用MBT鞋对健康男性下肢的动力学和运动学变化的即时影响。对十四名健康男性受试者(平均年龄:25.6±5.1岁)进行了三维步态分析。与稳定鞋相比,MBT鞋在减震阶段的地面反作用力(GRF)显着降低。使用MBT鞋的步态在站立早期阶段显示膝盖伸展角显着降低,在站立晚期阶段髋关节伸展角度减小,踝背屈角度增加。与稳定的鞋子相比,MBT鞋子在站立后期,踝关节力矩,负负力量和GRF的垂直分量的峰值显着降低。因此,MBT鞋可以在站立早期阶段协助减震,并在减小关节力矩和力量的同时保持前进的力量。这项研究的结果表明,MBT鞋可能会有效地改善减震效果,增加膝盖伸肌的活动能力并帮助脚踝下垂。

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