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Effect of Shoe Characteristic during Walking Acceleration and Deceleration

机译:鞋特性在行走加减速过程中的影响

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Walking in daily life is not always in ideal and constant speed, normal walking will often interrupted by avoidance of obstacles, changing in walking speed and turning to other walking direction. Shoes with different characteristic may also give different impact on the joint loading at lower extremities. Therefore, the aim of this study is to investigate the impact of three different types of footwear: sneakers, flip-flop and sport shoes, on lower extremities by evaluating the kinetic and kinematic parameters from both gender groups during acceleration and deceleration walking on treadmill. In this study, 15 male and 15 female healthy participants are recruited to perform gait analysis. Inverse dynamic method is applied into the self-derived mathematical model to analyse knee joint moment. Motion analysis parameters (VGRF, Knee Joint Moment, Impulse, Step Length, Stride Length & Cadence) been analyzed in this study. Both genders showed significant higher value of deceleration VGRF and knee joint moment compare to acceleration, while acceleration impulse is larger than deceleration. Step length and stride length of acceleration significantly higher than deceleration and resulting lower cadence. Footwear does not give significant impact to VGRF and knee joint moment. Sport shoes do not show significant changes on all investigated parameters. Sneaker and flip-flop were significantly reduced the walking cadence. The outcome of this finding provides a fundamental to understand the impact of footwear during acceleration and deceleration.
机译:在日常生活中行走并不总是处于理想和恒定的速度,正常的行走通常会由于避开障碍物,改变行走速度并转向其他行走方向而中断。具有不同特性的鞋子也可能对下肢的关节负荷产生不同的影响。因此,本研究的目的是通过评估跑步机上加速和减速过程中两个性别组的动力学和运动学参数,来研究三种不同类型的鞋(运动鞋,人字拖和运动鞋)对下肢的影响。在这项研究中,招募了15位男性和15位女性健康参与者进行步态分析。逆动力学方法被应用到自导出的数学模型中以分析膝关节力矩。在这项研究中分析了运动分析参数(VGRF,膝关节力矩,冲动,步长,步幅和踏频)。与加速度相比,两个性别的减速度VGRF和膝关节力矩值均显着较高,而加速度脉冲大于减速度。加速的步长和步幅明显高于减速,从而导致踏频降低。鞋类不会对VGRF和膝关节力矩产生重大影响。运动鞋并未在所有调查的参数上显示出显着变化。运动鞋和人字拖明显降低了步行节奏。这一发现的结果为了解鞋类在加速和减速过程中的影响提供了基础。

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