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Coordinative Motion-Based Bilateral Rehabilitation Training System with Exoskeleton and Haptic Devices for Biomedical Application

机译:生物医学应用的基于外骨骼和触觉设备的基于协调运动的双边康复训练系统

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摘要

According to the neuro-rehabilitation theory, compared with unilateral training, bilateral training is proven to be an effective method for hemiparesis, which affects the most part of stroke patients. In this study, a novel bilateral rehabilitation training system, which incorporates a lightweight exoskeleton device worn on the affected limb; a haptic device (Phantom Premium), which is used for generating a desired tactile feedback for the affected limb; and a VR (virtual reality) graphic interface, has been developed. The use of VR technology during rehabilitation can provide goal directed tasks with rewards and motivate the patient to undertake extended rehabilitation. This paper is mainly focused on elbow joint training, and other independent joints can be trained by easily changing the VR training interface. The haptic device is adopted to enable patients to use their own decision making abilities with a tactical feedback. Integrated with a VR-based graphic interface, the goal-oriented task can help to gradually recovery their motor function with a coordinative motion between two limbs. In particular, the proposed system can accelerate neural plasticity and motor recovery in those patients with little muscle strength by using the exoskeleton device. The exoskeleton device can provide from relatively high joint impedance to near-zero impedance, and can provide a partial assist as the patient requires.
机译:根据神经康复理论,与单侧训练相比,双侧训练被证明是一种偏瘫的有效方法,它影响了大部分中风患者。在这项研究中,一种新颖的双边康复训练系统,结合了戴在患肢上的轻型外骨骼装置;触觉设备(Phantom Premium),用于为患肢产生所需的触觉反馈;并且已经开发了VR(虚拟现实)图形界面。在康复过程中使用VR技术可以为目标任务提供奖励,并激励患者进行长期康复。本文主要侧重于肘关节训练,其他独立关节可以通过轻松更改VR训练界面来进行训练。采用触觉设备使患者能够利用自己的决策能力和战术反馈。与基于VR的图形界面集成后,以目标为导向的任务可以通过两个肢体之间的协调运动帮助逐步恢复其运动功能。特别地,通过使用外骨骼设备,所提出的系统可以加速那些肌肉力量很少的患者的神经可塑性和运动恢复。外骨骼装置可以提供从相对较高的关节阻抗到接近零的阻抗,并且可以根据患者需要提供部分辅助。

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