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Global dynamics of bipedal macaques during grounded and aerial running

机译:接地和空中跑步期间BipeDal Macaques的全球动态

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摘要

Macaques trained to perform bipedally use grounded running, skipping and aerial running, but avoid walking. The preference for grounded running across a wide range of speeds is substantially different from the locomotion habits observed in humans, which may be the result of differences in leg compliance. In the present study, based on kinematic and dynamic observations of three individuals crossing an experimental track, we investigated global leg properties such as leg stiffness and viscous damping during grounded and aerial running. We found that, in macaques, similar to human and bird bipedal locomotion, the vector of the ground reaction force is directed from the center of pressure (COP) to a virtual pivot point above the center of mass (COM). The visco-elastic leg properties differ for the virtual leg (COM-COP) and the effective leg (hip-COP) because of the position of the anatomical hip with respect to the COM. The effective leg shows damping in the axial direction and positive work in the tangential component. Damping does not prevent the exploration of oscillatory modes. Grounded running is preferred to walking because of leg compliance. The transition from grounded to aerial running is not accompanied by a discontinuous change. With respect to dynamic properties, macaques seem to be well placed between bipedal specialists (humans and birds). We speculate that the losses induced in the effective leg by hip placement and slightly pronograde posture may not pay off by facilitating stabilization, making bipedal locomotion expensive and insecure for macaques.
机译:Macaques训练有素,以执行双面使用接地运行,跳过和空中跑步,但避免走路。在广泛的速度上进行接地的偏好与人类观察到的运动习惯基本上不同,这可能是腿部合规性差异的结果。在本研究中,基于三个人的运动和动态观察,三个人穿过实验轨道,我们在接地和空中跑步期间调查了全球腿部等腿刚度和粘性阻尼。我们发现,在类似于人和鸟双面运动的猕猴中,地反作用力的向量从压力(COP)的中心引导到质量中心(COM)上方的虚拟枢转点。由于解剖臀部相对于COM的位置,粘弹性腿部属性不同于虚拟腿(COM-COP)和有效腿(臀部COP)。有效腿显示在切向组分中的轴向和正效中的阻尼。阻尼不会阻止振荡模式的探索。由于腿部遵守而行走是往来的跑步。从接地到空中跑步的过渡不是伴随着不连续的变化。关于动态性质,猕猴似乎很好地放置在BipeDal专家(人类和鸟类)之间。我们推测推出通过臀部放置和略微阴化姿势在有效腿部诱导的损失可能无法通过促进稳定性来偿还,使猕猴的昂贵和不安全的双模运动。

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