轻量化半主动背托设备提升站立失衡时的平衡稳定性
Improved Postural Stability Using a Lightweight Semi-Active Soft Back Support Device Under Standing Perturbations

- 采用气动人工肌肉与弹性带并联设计,快速响应失衡
- 实验显示整体角动量下降,稳定裕度显著增加
- 适合老年人防跌倒,兼顾轻便与高效助力
老年人在站立时因前向失衡易发生跌倒。辅助躯干伸展的背部支撑装置可能通过防止过度躯干前屈来降低跌倒风险。此前研究多使用重型支撑装置,但其额外质量会不利地改变人体重心。而轻量化被动装置助力有限,因在轻微躯干前屈时产生的助力不足。本研究评估了一种轻量化半主动软式背支持装置在站立扰动后的姿势稳定性效果。该装置将气动人工肌肉(主动元件)与弹性带(被动元件)并联,可在扰动后迅速提供助力,克服被动装置局限。五名健康受试者实验表明,该装置显著降低了全身角动量,并提高了稳定裕度,表明平衡恢复能力增强。结果表明,半主动软穿戴机器人是一种有效且轻量化的站立扰动防跌策略。
原文摘要 · Abstract (English)
Older adults are particularly susceptible to falls following perturbations during standing, such as forward loss of balance. Back support devices that assist trunk extension may help mitigate fall risk by preventing excessive trunk flexion. Previous studies have investigated heavy back support devices; however, these systems often introduced adverse effects on stability due to their added mass, which shifted the body's natural center of mass unfavorably. In contrast, lightweight passive devices have shown limited benefits, as they can generate only modest assistive forces during the relatively small trunk flexion associated with forward balance loss. In this study, we evaluated the effects of a lightweight semi-active soft back support device on postural stability following standing perturbations. Our device combines an active element (a pneumatic artificial muscle) in parallel with a passive elastic band. The active element rapidly provides assistive force following a perturbation, overcoming the limitations of passive devices. Experiments conducted with five healthy individuals demonstrated that the semi-active device significantly reduced whole-body angular momentum and increased the margin of stability, indicating improved balance recovery performance. These results highlight the promise of semi-active soft wearable robots as an effective and lightweight strategy for fall prevention during standing perturbations.
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