论文标题

人类步行中的“虚拟枢轴点”:始终在实验上观察到,但模拟表明稳定可能不是必需的

'Virtual pivot point' in human walking: always experimentally observed but simulations suggest it may not be necessary for stability

论文作者

Schreff, L., Haeufle, D. F. B., Badri-Spröwitz, A., Vielemeyer, J., Müller, R.

论文摘要

在计算机模拟模型和人类步行实验中,已经观察到了质量中心上方的点附近地面反作用力的交点。普遍观察到的相交点(IP)通常假定为两足动物行走提供姿势稳定性。在这项研究中,我们通过质疑没有IP行走的问题来挑战这一假设。通过多阶段优化得出具有神经肌肉反射模型的步态,我们发现稳定的步行模式没有显示地面反应力的IP典型交点的迹象。发现的非IP步态是稳定的,并且成功拒绝了踩下扰动,这表明IP对于运动鲁棒性或姿势稳定性不需要。基于碰撞的分析表明,非IP步态具有质量(COM)动力学中心(COM)动力学,其com速度和地面反应力的向量越来越彼此相对,这表明机械运输成本增加。尽管我们的计算机仿真结果尚未通过实验研究确认,但它们已经表明IP在姿势稳定性中的作用应进一步研究。此外,我们对COM动力学和步态效率的观察结果表明,IP可能具有应考虑的替代或其他功能。

The intersection of ground reaction forces near a point above the center of mass has been observed in computer simulation models and human walking experiments. Observed so ubiquitously, the intersection point (IP) is commonly assumed to provide postural stability for bipedal walking. In this study, we challenge this assumption by questioning if walking without an IP is possible. Deriving gaits with a neuromuscular reflex model through multi-stage optimization, we found stable walking patterns that show no signs of the IP-typical intersection of ground reaction forces. The non-IP gaits found are stable and successfully rejected step-down perturbations, which indicates that an IP is not necessary for locomotion robustness or postural stability. A collision-based analysis shows that non-IP gaits feature center of mass (CoM) dynamics with vectors of the CoM velocity and ground reaction force increasingly opposing each other, indicating an increased mechanical cost of transport. Although our computer simulation results have yet to be confirmed through experimental studies, they already indicate that the role of the IP in postural stability should be further investigated. Moreover, our observations on the CoM dynamics and gait efficiency suggest that the IP may have an alternative or additional function that should be considered.

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