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How muscle fiber lengths and velocities affect muscle force generation as humans walk and run at different speeds

机译:当人类以不同的速度行走和奔跑时,肌肉纤维的长度和速度如何影响肌肉力量的产生

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The lengths and velocities of muscle fibers have a dramatic effect on muscle force generation. It is unknown, however, whether the lengths and velocities of lower limb muscle fibers substantially affect the ability of muscles to generate force during walking and running. We examined this issue by developing simulations of muscle-tendon dynamics to calculate the lengths and velocities of muscle fibers from electromyographic recordings of 11 lower limb muscles and kinematic measurements of the hip, knee and ankle made as five subjects walked at speeds of 1.0-1.75. m. s(-1) and ran at speeds of 2.0-5.0. m. s(-1). We analyzed the simulated fiber lengths, fiber velocities and forces to evaluate the influence of force-length and force- velocity properties on force generation at different walking and running speeds. The simulations revealed that force generation ability (i.e. the force generated per unit of activation) of eight of the 11 muscles was significantly affected by walking or running speed. Soleus force generation ability decreased with increasing walking speed, but the transition from walking to running increased the force generation ability by reducing fiber velocities. Our results demonstrate the influence of soleus muscle architecture on the walk-to-run transition and the effects of muscle-tendon compliance on the plantarflexors 'ability to generate ankle moment and power. The study presents data that permit lower limb muscles to be studied in unprecedented detail by relating muscle fiber dynamics and force generation to the mechanical demands of walking and running.
机译:肌肉纤维的长度和速度对肌肉力量的产生具有戏剧性的影响。然而,下肢肌肉纤维的长度和速度是否会实质影响肌肉在行走和跑步过程中产生力量的能力尚不清楚。我们通过开发模拟肌腱动力学的方法来研究此问题,以模拟11个下肢肌肉的肌电图记录以及五个受试者以1.0-1.75的速度行走时进行的髋,膝和踝关节运动学测量来计算肌纤维的长度和速度。 。米s(-1)并以2.0-5.0的速度运行。米s(-1)。我们分析了模拟的纤维长度,纤维速度和力,以评估力长度和力速度特性对不同步行和跑步速度下力产生的影响。模拟显示,步行或跑步速度显着影响了11条肌肉中的8条肌肉的力量产生能力(即每激活单位产生的力量)。 Soleus力的产生能力随着步行速度的增加而降低,但是从步行到跑步的过渡通过降低纤维速度来增加力的产生能力。我们的结果证明了比目鱼肌结构对步行过渡的影响,以及肌腱顺应性对plant屈肌产生踝关节力矩和力量的能力的影响。这项研究提供了数据,通过将肌肉纤维动力学和力的产生与步行和跑步的机械要求相关联,可以对下肢肌肉进行前所未有的详细研究。

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