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Arm rehabilitation with a robotic exoskeleleton in Virtual Reality

机译:在虚拟现实中的机器人外科手臂康复

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Several studies demonstrate the importance of an early, constant and intensive rehabilitation following cerebral accidents. This kind of therapy is an expensive procedure in terms of human resources and time, and the increase of both life expectance of world population and incidence of stroke is making the administration of such therapies more and more important. The development of new robotic devices for rehabilitation can help to reduce this cost and lead to new effective therapeutic procedures. In this paper we present an exoskeleton for the robotic-assisted rehabilitation of the upper limb. This article describes the main issues in the design of an exoskeletal robot with high performance, in terms of backdrivability, low inertia, large workspace isomorphic to the human arm and high payload to weight ratio. The implementation of three different robotic schemes of therapy in virtual reality with this exoskeleton, based on an impedance control architecture, are presented and discussed in detail. Finally the experimental results of a preliminary evaluation of functionality of the system carried out on one patient are presented, and compared with the performance in the execution of the exercise obtained with healthy volunteers. Moreover, other preliminary results from an extended pilot clinical study with the L-Exos are reported and discussed.
机译:几项研究表明,在脑事故之后,早期,恒定和密集的康复的重要性。这种治疗是人类资源和时间方面的昂贵程序,以及世界人口的寿命和中风发病率的增加是越来越重要的管理。用于康复的新机器人设备的开发有助于降低这一成本并导致新的有效治疗程序。在本文中,我们介绍了一个外骨骼,用于上肢的机器人辅助康复。本文介绍了高性能的外骨骼机器人设计中的主要问题,在反向激活,低惯性,大型工作空间对人臂同构和高有效载荷进行重量比。介绍并详细讨论了基于阻抗控制架构在虚拟现实中实现三种不同的机器人治疗方法。最后,提出了对一个患者进行的系统功能初步评估的实验结果,并与使用健康志愿者获得的运动的执行相比。此外,报告并讨论了与L-EXOS的延长导频临床研究的其他初步结果。

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