首页> 美国卫生研究院文献>Proceedings. Mathematical Physical and Engineering Sciences >Force direction patterns promote whole body stability even in hip-flexed walking but not upper body stability in human upright walking
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Force direction patterns promote whole body stability even in hip-flexed walking but not upper body stability in human upright walking

机译:力的方向模式即使在髋关节弯曲的步行中也能促进全身稳定性但在人的直立步行中却不能提高上身稳定性

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摘要

Directing the ground reaction forces to a focal point above the centre of mass of the whole body promotes whole body stability in human and animal gaits similar to a physical pendulum. Here we show that this is the case in human hip-flexed walking as well. For all upper body orientations (upright, 25°, 50°, maximum), the focal point was well above the centre of mass of the whole body, suggesting its general relevance for walking. Deviations of the forces' lines of action from the focal point increased with upper body inclination from 25 to 43 mm root mean square deviation (RMSD). With respect to the upper body in upright gait, the resulting force also passed near a focal point (17 mm RMSD between the net forces' lines of action and focal point), but this point was 18 cm below its centre of mass. While this behaviour mimics an unstable inverted pendulum, it leads to resulting torques of alternating sign in accordance with periodic upper body motion and probably provides for low metabolic cost of upright gait by keeping hip torques small. Stabilization of the upper body is a consequence of other mechanisms, e.g. hip reflexes or muscle preflexes.
机译:将地面反作用力引导到整个身体质心上方的焦点,可以提高人体和动物步态的稳定性,类似于物理摆。在这里,我们证明了在人类髋屈式步行中也是如此。对于上半身的所有方向(直立,25°,50°,最大),焦点都位于整个身体的质心上方,这表明其与行走有关。力的作用线与焦点的偏离随着上身倾斜度从25mm至43mm的均方根偏差(RMSD)而增加。对于垂直步态的上半身,合力也经过一个焦点附近(净力作用点与焦点之间的17 mm RMSD),但该点在其质心以下18 cm。虽然这种行为模仿了不稳定的倒立摆,但会导致周期性周期性的上半身运动产生交替的正负号扭矩,并可能通过保持较小的髋部扭矩来降低直立步态的新陈代谢成本。上身的稳定是其他机制的结果,例如髋关节反射或肌肉反射。

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