Institute of Normal and Pathological Physiology, Slovak Academy of Sciences, Bratislava, Slovak Republic.
Gait Posture. 2014;39(1):410-4. doi: 10.1016/j.gaitpost.2013.08.005. Epub 2013 Aug 18.
The aim of this study was to examine the effectiveness of visual biofeedback (VBF) signals from a force platform and accelerometer sensors placed on different body segments. The study was performed on 20 young subjects during standing on a firm and foam support surface with a VBF signal sensed from CoP, lower trunk (L5) and upper trunk (Th4). The VBF signal was controlled by 2D-movement of chosen body segment, which was presented as a red point on a monitor screen. Location of VBF signal had a significant effect on each postural parameter of CoP and trunk segments. RMS and amplitudes of postural sway in medial-lateral and anterior-posterior directions decreased during standing on both types of support surface due to VBF. L5-VBF and CoP-VBF significantly reduced CoP displacements and lower trunk tilts. Th4-VBF reduced upper trunk tilts. Frequency analysis of postural sway revealed a decrease of power spectral density (PSD) values in low frequency range (0.02-0.3Hz) and an increase of PSD values in higher frequency range (0.5-1.4 Hz) in the VBF conditions during the stance on the firm surface in anterior-posterior direction. Reduction of body sway was the most significant in the body segment from which the VBF signal was sensed. The CoP position and L5 position provided the best signals for VBF. Changes in frequency ranges of body sway suggest voluntary activation of balance control. The results open new opportunities to optimize VBF system for balance improvement using accelerometers.
本研究旨在检验放置在不同身体部位的力台和加速度计传感器的视觉生物反馈(VBF)信号的有效性。该研究在 20 名年轻受试者中进行,他们在坚硬和泡沫支撑表面上站立,通过 CoP、下躯干(L5)和上躯干(Th4)的传感器感知 VBF 信号。VBF 信号由所选身体部位的 2D 运动控制,在监视器屏幕上显示为红点。VBF 信号的位置对 CoP 和躯干段的每个姿势参数都有显著影响。由于 VBF,在两种支撑表面上站立时,前后和左右方向的姿势摆动的均方根(RMS)和振幅均减小。L5-VBF 和 CoP-VBF 显著降低了 CoP 位移和下躯干倾斜。Th4-VBF 减少了上躯干倾斜。姿势摆动的频率分析显示,在坚硬表面站立时,前-后方向的 VBF 条件下,低频范围(0.02-0.3Hz)的功率谱密度(PSD)值降低,高频范围(0.5-1.4Hz)的 PSD 值增加。在 VBF 条件下,身体摆动的减少在感知 VBF 信号的身体部位最为明显。CoP 位置和 L5 位置为 VBF 提供了最佳信号。身体摆动的频率范围的变化表明平衡控制的自愿激活。这些结果为使用加速度计优化 VBF 系统以改善平衡提供了新的机会。