Department of Mechanical Engineering, University of Alberta, 9211-116 Street NW, Edmonton, AB, T6G 1H9, Canada.
Glenrose Rehabilitation Hospital, Alberta Health Services, 10230-111 Avenue NW, Edmonton, AB, T5G 0B7, Canada.
Sci Rep. 2021 Jan 13;11(1):1026. doi: 10.1038/s41598-020-79955-y.
Walking stability has been assessed through gait variability or existing biomechanical measures. However, such measures are unable to quantify the instantaneous risk of loss-of-balance as a function of gait parameters, body sway, and physiological and perturbation conditions. This study aimed to introduce and evaluate novel biomechanical measures for loss-of-balance under various perturbed walking conditions. We introduced the concept of 'Extended Feasible Stability Region (ExFSR)' that characterizes walking stability for the duration of an entire step. We proposed novel stability measures based on the proximity of the body's centre of mass (COM) position and velocity to the ExFSR limits. We quantified perturbed walking of fifteen non-disabled individuals and three individuals with a disability, and calculated our proposed ExFSR-based measures. 17.2% (32.5%) and 26.3% (34.0%) of the measured trajectories of the COM position and velocity during low (high) perturbations went outside the ExFSR limits, for non-disabled and disabled individuals, respectively. Besides, our proposed measures significantly correlated with measures previously suggested in the literature to assess gait stability, indicating a similar trend in gait stability revealed by them. The ExFSR-based measures facilitate our understanding on the biomechanical mechanisms of loss-of-balance and can contribute to the development of strategies for balance assessment.
步行稳定性已通过步态变异性或现有的生物力学测量来评估。然而,这些测量方法无法量化步态参数、身体摆动以及生理和干扰条件下瞬间失去平衡的风险。本研究旨在引入和评估各种干扰步行条件下失去平衡的新生物力学测量方法。我们引入了“扩展可行稳定区域 (ExFSR)”的概念,该概念可描述整个步幅期间的步行稳定性。我们提出了基于身体质心 (COM) 位置和速度接近 ExFSR 极限的新稳定性测量方法。我们量化了十五名非残疾个体和三名残疾个体的受干扰步行,并计算了我们提出的基于 ExFSR 的测量方法。在低(高)干扰下,COM 位置和速度的测量轨迹有 17.2%(32.5%)和 26.3%(34.0%)超出了 ExFSR 极限,分别是非残疾和残疾个体。此外,我们提出的测量方法与文献中先前用于评估步态稳定性的测量方法显著相关,表明它们揭示了相似的步态稳定性趋势。基于 ExFSR 的测量方法有助于我们理解失去平衡的生物力学机制,并有助于制定平衡评估策略。