IEEE Trans Neural Syst Rehabil Eng. 2018 Jan;26(1):153-160. doi: 10.1109/TNSRE.2017.2762239. Epub 2017 Oct 17.
Coding scheme for earlier versions of vibrotactile biofeedback systems for balance-related applications was primarily binary in nature, either on or off at a given threshold (range of postural tilt), making it unable to convey information about error magnitude. The purpose of this paper was to explore the effects of two coding schemes (binary versus continuous) for vibrotactile biofeedback during dynamic weight-shifting exercises that are common physical therapists' recommended balance exercises used in clinical settings. Nine individuals with idiopathic Parkinson's disease and nine healthy elderly individuals participated in this paper. All participants performed dynamic weight-shifting exercises assisted with either the binary or continuous vibrotactile biofeedback delivered using with vibrating actuators (tactors) in either the anterior-posterior or medial-lateral direction. Participants' limits of stability at pre and post exercises were compared to evaluate the effects of the exercises on their range of motion. The continuous coding scheme produced significantly better performance than the binary scheme when both groups were performing dynamic weight-shifting balance exercises with assistive vibrotactile biofeedback. The results have implications in terms of maximizing the effects of error-driven motor learning and increasing performance on balance rehabilitation training combined with vibrotactile biofeedback.
用于平衡相关应用的早期振动触觉生物反馈系统的编码方案主要是二进制的,即在给定的阈值(姿势倾斜范围)处为“开”或“关”,因此无法传达有关误差幅度的信息。本文旨在探讨两种编码方案(二进制与连续)在动态重量转移练习中用于振动触觉生物反馈的效果,这些练习是临床环境中物理治疗师推荐的常用平衡练习。本文共有 9 名特发性帕金森病患者和 9 名健康老年人参与。所有参与者都进行了动态重量转移练习,这些练习通过在前部-后部或内侧-外侧方向上使用振动致动器(音轮)辅助提供二进制或连续振动触觉生物反馈。比较了参与者在练习前后的稳定性极限,以评估运动对其运动范围的影响。当两组参与者都在进行具有辅助振动触觉生物反馈的动态重量转移平衡练习时,连续编码方案的表现明显优于二进制方案。这些结果在最大程度地提高基于错误的运动学习效果以及在结合振动触觉生物反馈的平衡康复训练中提高表现方面具有意义。