Institute of Human Factors and Ergonomics, Shenzhen University, Shenzhen, China.
Ergonomics. 2021 Aug;64(8):995-1001. doi: 10.1080/00140139.2021.1896788. Epub 2021 Mar 18.
Accidental falls often occur during gait initiation. Excess body weight has been identified as a risk factor for accidental falls. This study aimed to examine the differences of gait initiation between overweight and normal-weight individuals. Fourteen overweight and 14 normal-weight young adults participated in the study. They were instructed to perform the gait initiation task under single-task and dual-task conditions. Dependent variables for the assessment of gait initiation included spatial-temporal measures and postural stability measures. The results showed that overweight could compromise postural stability during gait initiation, primarily by decreasing margin of stability in the anterior-posterior direction. Cognitive task interference with gait initiation was found to be similar between the overweight and normal weight groups. The findings from the present study can aid in better understanding the mechanisms associated with increased fall risks among overweight individuals. They also highlight the importance of overweight control in fall prevention. : Overweight was found to compromise postural stability during gait initiation, primarily by decreasing margin of stability in the anterior-posterior direction. The findings highlight the importance of overweight control in fall prevention. ANOVA: analyses of variance; AP: anterior-posterior; APA: anticipatory postural adjustment; BOS: base of support; BW: Body weight; COM: centre-of-mass; COP: center-of-pressure; CT: cognitive task; GI: Gait initiation; GRF: ground reaction force; HC: heel-contact; HO: heel-off; ML: medial-lateral; MOS: margin of stability; SD: standard deviation; SE: step execution; SL: step length; SW: step width; VEL_COM: velocity of the COM; XCOM: extrapolated center of mass.
意外跌倒常发生于步态起始阶段。超重被认为是意外跌倒的一个风险因素。本研究旨在探讨超重与正常体重个体在步态起始阶段的差异。14 名超重和 14 名正常体重的年轻成年人参与了本研究。他们被要求在单任务和双任务条件下完成步态起始任务。步态起始评估的因变量包括时空测量和姿势稳定性测量。结果表明,超重会影响步态起始时的姿势稳定性,主要通过降低前后方向的稳定性边界来实现。认知任务对超重和正常体重组步态起始的干扰作用相似。本研究的结果可以帮助更好地理解超重个体跌倒风险增加的相关机制。它们还强调了超重控制在预防跌倒中的重要性。 ANOVA:方差分析;AP:前后方向;APA:姿势预备调整;BOS:支撑基础;BW:体重;COM:质心;COP:压力中心;CT:认知任务;GI:步态起始;GRF:地面反作用力;HC:足跟接触;HO:足跟离地;ML:内外方向;MOS:稳定性边界;SD:标准差;SE:步执行;SL:步长;SW:步宽;VEL_COM:质心速度;XCOM:外推质心。