Mechanical Engineering, Sharif University of Technology, Tehran, Iran; Djavad Mowafaghian Research Center for Intelligent Neuro-rehabilitation Technologies, Tehran, Iran.
Mechanical and Aerospace Engineering, University at Buffalo, Buffalo, NY.
Med Eng Phys. 2020 Sep;83:7-14. doi: 10.1016/j.medengphy.2020.07.006. Epub 2020 Jul 15.
Balance impairment is critical for many patient groups such as those with neural and musculoskeletal disorders and also the elderly. Accurate and objective assessment of balance performance has led to the development of several indices based on the measurement of the center of pressure. In this study, a robotic device was designed and fabricated to provide controlled and repeatable mechanical perturbations to the standing platform of the user. The device uses servo-controlled actuators and two parallel mechanisms to provide independent rotations in mediolateral and anterior-posterior directions. The device also provides visual feedback of the center of pressure position to the user. Functional tests were run and showed that the device is able to provide an appropriate dynamics (time constant of 0.19 s and bandwidth of 0.85 Hz) for the two motions. The efficacy of the device on the balance assessment was then evaluated experimentally. Ten healthy subjects performed a balance task with and without perturbations and seven center of pressure indices were measured. It was shown that the sensitivity of the indices to the user's performance was statistically increased in all indices particularly in anterior/posterior direction when the mechanical perturbations were present.
平衡障碍对许多患者群体至关重要,例如神经和肌肉骨骼疾病患者以及老年人。对平衡表现的准确和客观评估导致了基于压力中心测量的几种指标的发展。在这项研究中,设计并制造了一种机器人设备,以向用户的站立平台提供受控且可重复的机械干扰。该设备使用伺服控制的执行器和两个平行机构来提供在横向和前后方向上的独立旋转。该设备还为用户提供压力中心位置的视觉反馈。进行了功能测试,结果表明该设备能够为两个运动提供适当的动力学(时间常数为 0.19 s,带宽为 0.85 Hz)。然后通过实验评估了该设备在平衡评估中的效果。十名健康受试者在有和没有干扰的情况下执行了平衡任务,并测量了七个压力中心指标。结果表明,当存在机械干扰时,所有指标的敏感性,特别是在前/后方向上,对用户的表现均呈统计学增加。