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踝足矫形器(AFO)使用对年轻人在类似绊倒的干扰下避免跌倒所需的代偿性迈步反应的影响:对 AFO 处方和设计的影响。

The impact of ankle-foot-orthosis (AFO) use on the compensatory stepping response required to avoid a fall during trip-like perturbations in young adults: Implications for AFO prescription and design.

机构信息

School for Engineering of Matter, Transport & Energy, Arizona State University, Tempe, AZ, USA.

School of Biological and Health System Engineering, Arizona State University, Tempe, AZ, USA.

出版信息

J Biomech. 2020 Apr 16;103:109703. doi: 10.1016/j.jbiomech.2020.109703. Epub 2020 Feb 25.

Abstract

Ankle-foot-orthoses (AFOs) are commonly prescribed to treat foot drop and enhance walking in fall-prone individuals (e.g. stroke). AFOs improve static balance but AFO-users are still at high fall risk. To our knowledge, no one has studied the biomechanical effect of AFO-use on the compensatory stepping response required to avoid falling during dynamic conditions such as trip, the leading cause of falls. The objective of this study is to evaluate the impact of a semi-rigid thermoplastic AFO on the compensatory stepping response in young healthy individuals following trip-like treadmill perturbations. We found that the AFO on the stepping leg (AFO-step) decreased trunk stability (increased trunk angle and angular velocity), shortened the compensatory step length, and reduced dynamic stability (smaller COM-BOS). AFO on the support leg (AFO-support) was only marginally different from the No-AFO condition. Detrimental changes in compensatory stepping response (e.g. decreased trunk stability) were linearly correlated to diminished propulsive impulse of the step. In summary, AFO-use on the stepping leg is associated with impaired compensatory stepping response (e.g. reduced trunk stability) and decreased propulsive impulse in young adults. It is important to note that AFO-use enhances static stability and decreases the probability of a trip/stumble occurring indicating they are important for fall prevention. Still, our results suggest that AFO-use may impair the compensatory stepping response after a trip/stumble has occurred and may suggest that preserving plantarflexion function may support the compensatory stepping response. Further study of these devices and their impact on compensatory stepping response in fall-prone individuals is warranted.

摘要

踝足矫形器(AFO)常用于治疗足下垂并增强易跌倒者(如中风患者)的步行能力。AFO 可改善静态平衡,但 AFO 用户仍有较高的跌倒风险。据我们所知,目前还没有人研究 AFO 使用对避免跌倒所需的代偿性跨步反应的生物力学影响,而动态条件下的跌倒(如绊倒)往往是导致跌倒的原因。本研究的目的是评估半刚性热塑 AFO 在类似于绊倒的跑步机干扰后对年轻健康个体的代偿性跨步反应的影响。我们发现,支撑腿上的 AFO(AFO-支撑)和没有 AFO 的情况基本相同,而迈步腿上的 AFO(AFO-迈步)降低了躯干稳定性(增加了躯干角度和角速度),缩短了代偿步长,降低了动态稳定性(COM-BOS 减小)。代偿性跨步反应的有害变化(例如躯干稳定性降低)与跨步的推进冲量减小呈线性相关。总之,迈步腿上使用 AFO 与代偿性跨步反应受损(例如躯干稳定性降低)和年轻成年人推进冲量减小有关。需要注意的是,AFO 使用增强了静态稳定性,降低了绊倒/跌倒的发生概率,这表明它们对预防跌倒很重要。然而,我们的结果表明,AFO 使用可能会在绊倒/跌倒发生后损害代偿性跨步反应,这可能表明保留跖屈功能可能有助于代偿性跨步反应。有必要进一步研究这些设备及其对易跌倒者代偿性跨步反应的影响。

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