School of Integrated Technology, Gwangju Institute of Science and Technology, Gwangju 61005, Republic of Korea.
School of Mechanical and Aerospace Engineering, Gyeongsang National University, Jinju 52828, Republic of Korea.
J Healthc Eng. 2018 Jun 11;2018:7892020. doi: 10.1155/2018/7892020. eCollection 2018.
Aging, injury, or ailments can contribute to impaired balance control and increase the risk of falling. Provision of light touch augments the sense of balance and can thus reduce the amount of body sway. In this study, a wearable reaction wheel-based system is used to deliver light touch-based balance biofeedback on the subject's back. The system can sense torso tilt and, using reaction wheels, generates light touch. A group of 7 healthy young individuals performed balance tasks under 12 trial combinations based on two conditions each of standing stance and surface types and three of biofeedback device status. Torso tilt data, collected from a waist-mounted smartphone during all the trials, were analyzed to determine the efficacy of the system. Provision of biofeedback by the device significantly reduced RMS of mediolateral (ML) trunk tilt ( < 0.05) and ML trunk acceleration ( < 0.05). Repeated measures ANOVA revealed significant interaction between stance and surface on reduction in RMS of ML trunk tilt, AP trunk tilt, ML trunk acceleration, and AP trunk acceleration. The device shows promise for further applications such as virtual reality interaction and gait rehabilitation.
衰老、损伤或疾病会导致平衡控制受损,增加跌倒的风险。提供轻柔触摸可以增强平衡感,从而减少身体摆动。在这项研究中,使用基于可穿戴反应轮的系统在受测者的背部提供基于轻柔触摸的平衡生物反馈。该系统可以感测躯干倾斜,并使用反应轮产生轻柔触摸。一组 7 名健康的年轻人在基于两种条件(站立姿势和表面类型各两种)和三种生物反馈设备状态的 12 种试验组合下完成平衡任务。在所有试验期间,从腰部安装的智能手机收集躯干倾斜数据,以确定系统的功效。设备提供的生物反馈显著降低了中侧(ML)躯干倾斜的均方根值(<0.05)和 ML 躯干加速度(<0.05)。重复测量方差分析显示,在 ML 躯干倾斜、AP 躯干倾斜、ML 躯干加速度和 AP 躯干加速度的 RMS 减少方面,姿势和表面之间存在显著的相互作用。该设备有望进一步应用于虚拟现实交互和步态康复等领域。