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Effect of torsional stiffness on biomechanical variables of the lower extremity during running

机译:跑步过程中扭转刚度对下肢生物力学变量的影响

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摘要

Torsion, the relative in-/eversion between forefoot and rearfoot, is a concept that has been incorporated into running shoes for almost 30 years. Studies have shown an influence of footwear torsional stiffness on lower extremity biomechanics during running but results are inconclusive. However, the influence of the torsion axis of the shoe on kinematics and kinetics of running has not been examined. Therefore, the goal was to examine the effect of shoes with a specially designed torsion element on running biomechanics of the lower extremities. Twenty runners performed heel-toe running at 4.0 ms-1 with three shoes and barefoot. All shoes had a torsion element based on a rearfoot and a forefoot element connected by bushings that had a defined rotation axis. The torsional stiffness was altered by modifications made to the torsion element and the surrounding midsole. A force plate and camera system were used to collect kinetics and kinematics. Foot torsion, ankle eversion, ankle and knee moments in the frontal and transverse plane and ground reaction forces were compared between conditions using paired t-tests. The shoe with the lowest torsional stiffness did not result in larger torsion range of motion compared to a stiffer shoe. Ankle eversion decreased with decreasing torsional stiffness while the changes in ankle kinetics were not consistent between the frontal and transverse plane. Torsional stiffness did not have a systematic influence on knee joint kinetics. While shoe torsional stiffness influences foot kinematics significantly, it does not affect lower extremity running biomechanics in a way that would alter the risk of running injuries.
机译:扭力是前脚和后脚之间相对内翻/外翻的概念,已经在跑鞋中应用了近30年。研究表明,鞋的扭转刚度对跑步过程中下肢生物力学有影响,但结果尚无定论。然而,尚未研究鞋的扭转轴线对运动学和跑步动力学的影响。因此,目标是检查带有特殊设计的扭力元件的鞋子对下肢跑步生物力学的影响。 20名跑步者用三双鞋和赤脚以4.0 ms-1的速度进行脚跟脚趾跑。所有鞋子都有一个基于后脚和前脚的扭力元件,该扭力元件通过衬套连接,衬套具有确定的旋转轴。扭转刚度通过对扭转元件和周围中底的修改而改变。测力板和照相机系统用于收集动力学和运动学。使用成对t检验比较条件之间的足部扭转,踝关节外翻,踝关节和膝关节在正面和横向平面上的力矩以及地面反作用力。与较硬的鞋相比,具有最低的扭转刚度的鞋不会产生较大的扭转运动范围。踝关节外翻随着扭转刚度的降低而降低,而踝关节动力学的变化在额面和横向平面之间不一致。扭转刚度对膝关节动力学没有系统的影响。鞋的扭转刚度会显着影响脚的运动学,但不会以改变骑行伤害风险的方式影响下肢的跑步生物力学。

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