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首页> 外文期刊>Journal of Biomechanics >The influence of foot position on body dynamics.
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The influence of foot position on body dynamics.

机译:脚的位置对身体动力学的影响。

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During locomotion, the human body exhibits inherent dynamic properties such as mass (M), stiffness (K) and damping (B). During the gait cycle, foot contact with the ground progresses from the heel to the toe. Contact forces between the foot and ground are defined as ground reaction forces (GRF). It is unclear how body dynamics are affected by foot landing position. If the shape of GRF is indicative of body dynamics, our understanding of gait patterns in normal and pathologic conditions may improve. The aims of this study were to determine:(1) whether foot landing position affects the inherent dynamics of the human body and (2) the extent to which the GRF curve reflects the response of inherent body dynamics to sudden loading. Eight non-disabled control volunteers performed a series of small jumps and landed on one leg with a fully extended knee in three foot landing positions: heel, mid-foot, and toe. They then walked at self-paced velocity over force plates. For each foot landing position, values of K, B and the dimensionless damping coefficient, xi, were calculated from the period of vertical body oscillations, T, and compared with an ANOVA test. In addition, the time between the two peaks of the vertical GRF, T(GRF), was compared with T. We found that that K and B decreased and xi did not change (p<0.01) between heel to toe-landing positions. T(GRF) was not different than T for the toe-landing position, which suggests that the dynamic body response has major impact on the shape of GRF.
机译:在运动过程中,人体表现出固有的动力学特性,例如质量(M),刚度(K)和阻尼(B)。在步态周期中,脚与地面的接触从脚跟到脚趾逐渐发展。脚与地面之间的接触力定义为地面反作用力(GRF)。尚不清楚脚着地位置如何影响身体动力学。如果GRF的形状指示身体动态,我们对正常和病理状态下步态模式的理解可能会有所改善。这项研究的目的是确定:(1)脚着地位置是否会影响人体的固有动力学,以及(2)GRF曲线反映人体固有动力学对突然负荷的响应的程度。八名非残障对照志愿者进行了一系列小跳,并以完全伸展的膝盖在三个脚着地,脚后跟,中脚和脚趾的三个腿上着地,降落在一条腿上。然后,他们以自定速度在压板上行走。对于每个脚着陆位置,从垂直车身振动周期T计算出K,B值和无量纲阻尼系数xi,并与ANOVA测试进行比较。此外,将垂直GRF的两个峰值之间的时间T(GRF)与T进行了比较。我们发现,脚跟到脚趾着地位置之间的K和B减小并且xi不变(p <0.01)。对于脚趾着地位置,T(GRF)与T并无不同,这表明动态身体反应对GRF的形状有重要影响。

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