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Leg stiffness and joint stiffness while running to and jumping over an obstacle

机译:奔跑并越过障碍物时的腿部刚度和关节刚度

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During running, muscles of the lower limb act like a linear spring bouncing on the ground. When approaching an obstacle, the overall stiffness of this leg-spring system (kleg) is modified during the two steps preceding the jump to enhance the movement of the center of mass of the body while leaping the obstacle. The aim of the present study is to understand how kleg is modified during the running steps preceding the jump. Since kleg depends on the joint torsional stiffness and on the leg geometry, we analyzed the changes in these two parameters in eight subjects approaching and leaping a 0.65m-high barrier at 15kmh-1. Ground reaction force (F) was measured during 5-6 steps preceding the obstacle using force platform and the lower limb movements were recorded by camera. From these data, the net muscular moment (Mj), the angular displacement (θj) and the lever arm of F were evaluated at the hip, knee and ankle. At the level of the hip, the Mj-θj relation shows that muscles are not acting like torsional springs. At the level of the knee and ankle, the Mj-θj relation shows that muscles are acting like torsional springs: as compared to steady-state running, the torsional stiffness kj decreases from ~1/3 two contacts before the obstacle, and increases from ~2/3 during the last contact. These modifications in kj reflect in changes in the magnitude of F but also to changes in the leg geometry, i.e. in the lever arms of F.
机译:在跑步过程中,下肢的肌肉就像在地上弹起的线性弹簧一样。当接近障碍物时,在跳跃前的两个步骤中会修改此腿部弹簧系统的整体刚度(kleg),以在跳跃障碍物时增强身体质心的运动。本研究的目的是了解在跳步之前的跑步步骤中kleg的变化方式。由于kleg取决于关节的扭转刚度和腿部的几何形状,因此我们分析了八名受试者在15kmh-1处接近并越过0.65m高的障碍物时这两个参数的变化。使用障碍物平台在障碍物之前的5-6个步骤中测量地面反作用力(F),并通过摄像头记录下肢运动。根据这些数据,对臀部,膝盖和脚踝处的F的净肌肉力矩(Mj),角位移(θj)和杠杆臂进行了评估。在臀部水平,Mj-θj关系表明肌肉的行为不像扭转弹簧。在膝盖和脚踝处,Mj-θj关系表明,肌肉像扭力弹簧一样工作:与稳态跑步相比,扭力刚度kj从障碍物前两个接触点的约1/3处减小,而从在最后一次联系中的〜2/3。 kj的这些变化不仅反映了F的大小变化,还反映了腿部几何形状的变化,即F的杠杆臂。

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