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The bounce of the body in hopping running and trotting: different machines with the same motor

机译:跳动跑步和小跑时身体的反弹:具有相同电机的不同机器

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摘要

The bouncing mechanism of human running is characterized by a shorter duration of the brake after ‘landing’ compared with a longer duration of the push before ‘takeoff’. This landing–takeoff asymmetry has been thought to be a consequence of the force–velocity relation of the muscle, resulting in a greater force exerted during stretching after landing and a lower force developed during shortening before takeoff. However, the asymmetric lever system of the human foot during stance may also be the cause. Here, we measure the landing–takeoff asymmetry in bouncing steps of running, hopping and trotting animals using diverse lever systems. We find that the duration of the push exceeds that of the brake in all the animals, indicating that the different lever systems comply with the basic property of muscle to resist stretching with a force greater than that developed during shortening. In addition, results show both the landing–takeoff asymmetry and the mass-specific vertical stiffness to be greater in small animals than in large animals. We suggest that the landing–takeoff asymmetry is an index of a lack of elasticity, which increases with increasing the role of muscle relative to that of tendon within muscle–tendon units.
机译:人为运行的弹跳机制的特点是,“着陆”后的制动时间较短,而“起飞”前的制动时间较长。人们认为,这种着陆-起飞不对称是肌肉力量-速度关系的结果,导致着陆后伸展期间施加的力更大,而起飞前缩短期间产生的力较小。但是,站立时人脚的不对称杠杆系统也可能是原因。在这里,我们使用各种杠杆系统,在奔跑,跳跃和小跑动物的弹跳步骤中测量着陆与起飞的不对称性。我们发现,在所有动物中,推动的持续时间都超过了制动的持续时间,这表明不同的杠杆系统符合肌肉的基本属性,即以比缩短时产生的力量更大的力量抵抗拉伸。此外,结果表明,小动物的着陆-起飞不对称性和质量比垂直刚度都比大动物要大。我们认为,着陆起飞不对称性是缺乏弹性的指标,随着肌肉相对于肌腱单位内的肌腱作用的增加而增加。

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