Department of Mechanical Engineering, Korea Advanced Institute of Science and Technology, Daejeon, Republic of Korea.
J Biomech. 2013 Jan 4;46(1):77-82. doi: 10.1016/j.jbiomech.2012.10.003. Epub 2012 Nov 28.
A spring loaded inverted pendulum model successfully demonstrated the oscillatory behavior of the center of mass (CoM) and corresponding ground reaction forces (GRFs) of young healthy subjects. This study questioned whether spring-like leg walking dynamics are consistently observed in the walking of older adults that exhibit different gait characteristics, such as slower gait speed, from the young. Eight young and eight older adult subjects participated in overground walking experiments performed at four different gait speeds, ranging from their self-selected speed to a maximum walking speed. To calculate the effective leg stiffness, the damped compliant leg model with a curved foot was used. The model parameters of leg stiffness and damping constant were optimized to achieve the best fit between model and human GRFs data. We observed that the GRFs data from both age groups were reasonably well fitted by spring-like leg dynamics throughout the broad range of gait speeds. The leg stiffness and damping constant consistently increased as a function of the walking speed in both age groups, but slightly greater variations of the model parameters were observed for the older adults' trials. The results imply that human walking dynamics and the variation with respect to age can be well captured by spring-like leg dynamics.
一个弹簧加载倒立摆模型成功地演示了年轻健康受试者的质心(CoM)和相应的地面反作用力(GRF)的振荡行为。本研究质疑在表现出与年轻人不同步态特征(例如较慢的步速)的老年人行走中是否始终观察到类似弹簧的腿部动力学。 8 名年轻和 8 名年长的成年人参加了在四个不同步速(从他们的自选速度到最大行走速度)下进行的地面行走实验。为了计算有效的腿部刚度,使用了具有弯曲脚的阻尼顺应性腿部模型。腿部刚度和阻尼常数的模型参数进行了优化,以实现模型与人体 GRF 数据之间的最佳拟合。我们观察到,在整个广泛的步速范围内,来自两个年龄组的 GRF 数据都可以通过类似弹簧的腿部动力学很好地拟合。腿部刚度和阻尼常数随着两个年龄组的步行速度的增加而呈一致增加的趋势,但对于老年人的试验,模型参数的变化稍大。结果表明,人类行走动力学及其随年龄的变化可以很好地通过类似弹簧的腿部动力学来捕获。