IEEE Trans Neural Syst Rehabil Eng. 2019 Aug;27(8):1617-1625. doi: 10.1109/TNSRE.2019.2924682. Epub 2019 Jun 24.
Variations in biofeedback coding schemes for postural control, in recent research, have shown significant differences in performance outcomes due to variations in coding schemes. However, the application of vibrotactile biofeedback coding schemes to gait symmetry training is not well explored. In this paper, we devised various vibrotactile biofeedback modes and identified their efficacy during gait symmetry training of individuals suffering from hemiparesis due to stroke. These modes are composed of variations in vibration type (on-time or intensity), and relation type (proportional or inversely-proportional) with the error in symmetry ratio. Eight individuals with stroke participated in walking trials. From dependent t-tests on the collected data, we found improved achievement of temporal gait symmetry while utilizing all the provided biofeedback modes compared to no biofeedback (P < 0.001). Furthermore, two-way repeated measures ANOVA revealed statistically significant difference in symmetry ratio for main effect of vibration type (P-value = 0.016, partial eta squared = 0.585). The participants performed better with modes of biofeedback with varying vibration on-times. Furthermore, participants showed better performance when the biofeedback varied proportionally with the error. These findings suggest that biofeedback coding schemes may have a significant effect on the performance of gait training.
在最近的研究中,姿势控制的生物反馈编码方案存在变化,由于编码方案的变化,表现结果存在显著差异。然而,振动触觉生物反馈编码方案在步态对称性训练中的应用尚未得到充分探索。在本文中,我们设计了各种振动触觉生物反馈模式,并确定了它们在中风引起的偏瘫患者步态对称性训练中的效果。这些模式由振动类型(按时或强度)和与对称比误差的关系类型(比例或反比例)的变化组成。八名中风患者参与了行走试验。从收集数据的依赖 t 检验中,我们发现与没有生物反馈(P < 0.001)相比,利用所有提供的生物反馈模式可以更好地实现时间步态对称性。此外,双向重复测量方差分析显示,振动类型的主效应在对称比方面存在统计学上的显著差异(P 值=0.016,偏 eta 平方=0.585)。参与者在具有不同振动按时的生物反馈模式下表现更好。此外,当生物反馈与误差成比例变化时,参与者表现更好。这些发现表明,生物反馈编码方案可能对步态训练的表现有重大影响。