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Design and Characterization of a 3D Printed Soft Robotic Wrist Sleeve with 2 DoF for Stroke Rehabilitation

机译:三维印刷软机器人手腕套管的设计与表征2 DOF用于笔划康复

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Stroke incidence may cause severe upper limb impairment, reducing the quality of life of patients who are unable to carry out daily functional tasks. In recent years, soft robotics has emerged as a promising avenue in providing robot assisted rehabilitation due to its compliant nature which makes it safe for interaction with humans. Task-specific rehabilitative exercises require the mobility of multiple upper limb joints but majority of the soft robotic exoskeletons thus far focuses on rehabilitating the hand. To date, soft robotic wrist exoskeletons are lacking in providing sufficient degree of freedom to the wrist in safe operating conditions. In our work, we present a 3D printed Soft Robotic Wrist Sleeve (SWS) that is capable of providing wrist mobility in two degrees of freedom with sufficient torque and bending to recover at least 70% of a healthy individual's range of motion. We also describe the fabrication process of the fold-based design which may be adopted in other applications.
机译:中风发病率可能导致严重的上肢损伤,降低无法进行日常功能任务的患者的生活质量。近年来,由于其符合性的性质,软机器人作为提供机器人辅助康复的有希望的大道,这使得与人类的互动安全。任务特定的康复练习需要多个上肢关节的移动性,但大多数软机器人外骨骼迄今为止侧重于康复手。迄今为止,在安全的操作条件下缺乏为手腕提供足够的自由度,缺乏软机器人腕带外骨骼。在我们的工作中,我们展示了一种3D印刷软机器人腕带套管(SWS),其能够在两度自由中提供带有足够扭矩和弯曲的腕部移动,以恢复至少70%的健康个体运动范围的运动范围。我们还描述了可以在其他应用中采用的基于折叠的设计的制造过程。

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