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Performance Evaluation of a Powered Variable-stiffness Exoskeleton Device for Bilateral Training

机译:用于双边训练的动力可变刚度外骨骼设备的性能评估

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Bilateral rehabilitation training has been proposed to help patients of hemiplegia who have partial impairment of the upper limb to regain the ability of daily living (ADL). In this paper, a bilateral training method by means of a novel power-assist exoskeleton device is presented to help post-stroke patients to improve rehabilitation effects. In order to provide appropriate power assistance during home-based rehabilitation, a variable stiffness actuator (VSA) was applied to regulate the output stiffness of the exoskeleton device. This paper presents the performance evaluation of the integrated VSA. The results related to the performance demonstrated that high stiffness could rapidly force the elbow joint to the initial equilibrium position to ensure precise trajectory movement, while low stiffness could allow relatively large deviations from the desired trajectory thus inherently guaranteeing the patient's safety. In addition, a preliminary elbow rehabilitation trial is performed to evaluate the proposed bilateral rehabilitation strategy. The results show that the proposed bilateral training method can allow the exoskeleton device to smoothly drive the user's right arm to follow the movements of his left arm.
机译:已提议进行双边康复训练,以帮助上肢部分受损的偏瘫患者恢复日常生活能力(ADL)。本文提出了一种借助新型动力辅助外骨骼设备的双边训练方法,以帮助中风后患者提高康复效果。为了在家庭康复期间提供适当的动力辅助,应用了可变刚度致动器(VSA)来调节外骨骼设备的输出刚度。本文介绍了集成VSA的性能评估。与性能相关的结果表明,高刚度可以迅速将肘关节推到初始平衡位置,以确保精确的轨迹运动,而低刚度可以允许相对于所需轨迹的较大偏离,从而固有地保证了患者的安全。此外,进行了初步的肘关节康复试验,以评估拟议的双边康复策略。结果表明,所提出的双边训练方法可以使外骨骼装置平稳地驱动使用者的右臂跟随其左臂的运动。

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