Freebal: dedicated gravity compensation for the upper extremities

Amo H. A. Stienen, E. Hekman, F. C. T. Helm, G. Prange, M. Jannink, A. Aalsma, H. Kooij
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引用次数: 60

Abstract

In most upper-extremity rehabilitation robotics, several components affect the therapy outcome. A common component is gravity compensation which alleviates upper-extremity movements. Gravity compensation by itself could improve motor control further or faster, separate from other effects of robotic therapy. To investigate the rehabilitation value of gravity compensation separately, we created the dedicated gravity compensation system, Freebal. The sling systems with ideal spring mechanisms in the Freebal are well suited for providing compensation forces. The device has steplessly scalable forces, a large range of motion with constant compensation forces, independent control of the compensation of the lower and upper arm, and low movement impedance. It also does not need external power, force sensors or active controllers. Finally, the Freebal can be easily moved, serviced and used in arm rehabilitation with either sitting or standing subjects.
自由式:上肢专用重力补偿
在大多数上肢康复机器人中,有几个组件影响治疗结果。一个常见的组成部分是重力补偿,减轻上肢运动。重力补偿本身可以进一步或更快地改善运动控制,与机器人治疗的其他效果不同。为了单独研究重力补偿的康复价值,我们创建了专用的重力补偿系统Freebal。在自由球中具有理想弹簧机构的吊索系统非常适合提供补偿力。该装置具有无级可伸缩力,运动范围大,补偿力恒定,上下臂补偿独立控制,运动阻抗低。它也不需要外部电源、力传感器或主动控制器。最后,Freebal可以很容易地移动,服务和用于手臂康复,无论是坐着还是站着的对象。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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