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在老年人和年轻人的简单模型中,脚踝外骨骼可能会妨碍站立平衡。

Ankle Exoskeletons May Hinder Standing Balance in Simple Models of Older and Younger Adults.

作者信息

Raz Daphna, Joshi Varun, Umberger Brian R, Ozay Necmiye

机构信息

University of Michigan Robotics Department, Ann Arbor, MI USA.

University of Michigan School of Kinesiology, Ann Arbor, MI USA.

出版信息

ArXiv. 2024 Oct 2:arXiv:2408.05418v3.

Abstract

Humans rely on ankle torque to maintain standing balance, particularly in the presence of small to moderate perturbations. Reductions in maximum torque (MT) production and maximum rate of torque development (MRTD) occur at the ankle with age, diminishing stability. Ankle exoskeletons are powered orthotic devices that may assist older adults by compensating for reduced torque and power production capabilities. They may also be able to assist with ankle strategies used for balance. However, the effect of such devices on standing balance in older adults is not well understood. Here, we model the effects ankle exoskeletons have on stability in physics-based models of healthy young and old adults, focusing on the potential to mitigate age-related deficits in MT and MRTD. Using backward reachability, a mathematical technique for analyzing the behavior of dynamical systems, we compute the set of stable center of mass positions and velocities for sex and age adjusted models of human standing balance with an ankle exoskeleton. We show that an ankle exoskeleton moderately reduces feasible stability boundaries in users who have full ankle strength. For individuals with age-related deficits, there is a trade-off. While exoskeletons augment stability at low center of mass velocities, they reduce stability in some high velocity conditions. Our results suggest that well-established control strategies must still be experimentally validated in older adults.

摘要

人类依靠踝关节扭矩来维持站立平衡,尤其是在受到小到中等程度的扰动时。随着年龄增长,踝关节产生的最大扭矩(MT)和最大扭矩发展速率(MRTD)会降低,从而削弱稳定性。踝关节外骨骼是一种动力矫形装置,它可以通过补偿扭矩和动力产生能力的下降来帮助老年人。它们或许还能够辅助用于平衡的踝关节策略。然而,此类装置对老年人站立平衡的影响尚未得到充分了解。在此,我们在基于物理的健康年轻人和老年人模型中模拟踝关节外骨骼对稳定性的影响,重点关注减轻与年龄相关的MT和MRTD缺陷的潜力。使用反向可达性(一种分析动态系统行为的数学技术),我们计算了带有踝关节外骨骼的人类站立平衡的性别和年龄调整模型的稳定质心位置和速度集合。我们表明,踝关节外骨骼会适度降低踝关节力量正常的使用者的可行稳定性边界。对于存在与年龄相关缺陷的个体而言,存在一种权衡。虽然外骨骼在低质心速度下会增强稳定性,但在某些高速情况下会降低稳定性。我们的结果表明,成熟的控制策略仍必须在老年人中进行实验验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/40f4/11456376/351c7814ecfd/nihpp-2408.05418v3-f0007.jpg

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