Institute of Biomaterials and Biomedical Engineering, University of Toronto, Toronto, ON M4Y 1R5, Canada.
Bloorview Research Institute, Holland Bloorview Kids Rehabilitation Hospital, Toronto, ON M4G 1R8, Canada.
Sensors (Basel). 2020 Mar 14;20(6):1628. doi: 10.3390/s20061628.
Individuals with lower-limb amputation often have gait deficits and diminished mobility function. Biofeedback systems have the potential to improve gait rehabilitation outcomes. Research on biofeedback has steadily increased in recent decades, representing the growing interest toward this topic. This systematic review highlights the methodological designs, main technical and clinical challenges, and evidence relating to the effectiveness of biofeedback systems for gait rehabilitation. This review provides insights for developing an effective, robust, and user-friendly wearable biofeedback system. The literature search was conducted on six databases and 31 full-text articles were included in this review. Most studies found biofeedback to be effective in improving gait. Biofeedback was most commonly concurrently provided and related to limb loading and symmetry ratios for stance or step time. Visual feedback was the most used modality, followed by auditory and haptic. Biofeedback must not be obtrusive and ideally provide a level of enjoyment to the user. Biofeedback appears to be most effective during the early stages of rehabilitation but presents some usability challenges when applied to the elderly. More research is needed on younger populations and higher amputation levels, understanding retention as well as the relationship between training intensity and performance.
下肢截肢者常存在步态缺陷和活动功能下降。生物反馈系统具有改善步态康复效果的潜力。近几十年来,生物反馈相关研究稳步增加,反映出人们对这一课题的兴趣日益浓厚。本系统评价重点介绍了生物反馈系统用于步态康复的方法学设计、主要技术和临床挑战,以及相关的有效性证据。本综述为开发有效、稳健且用户友好的可穿戴生物反馈系统提供了参考。文献检索在六个数据库中进行,共纳入 31 篇全文文章。大多数研究发现生物反馈有助于改善步态。生物反馈最常与肢体负重和站立或步幅时间的对称性比值同时提供,主要通过视觉、听觉和触觉反馈。生物反馈不应具有干扰性,理想情况下应能为用户带来一定乐趣。生物反馈似乎在康复早期阶段最有效,但在应用于老年人时存在一些可用性挑战。需要对年轻人群和更高截肢水平进行更多研究,以了解训练强度与表现之间的关系和保留率。