A Wearable Upper Extremity Rehabilitation Device for Inducing Arm Swing in Gait Training.

Jacob Bloom, Mohsen Alizadeh Noghani, Babak Hejrati
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Abstract

This paper presents the design and validation of a proof-of-concept prototype for a wearable rehabilitation device to incorporate arm swing during gait rehabilitation. Unlike current stationary exoskeletons used for rehabilitation of upper limbs' function, assisting arm swing during gait requires inducing faster arm flexion/extension movements while maintaining the users' arms unconstrained in other directions. We developed a portable and underactuated system with features such as a large workspace and backdrivability to induce arm swing. Its wide workspace allowed the wearers to easily move their arms in different directions without any constraints. A modified double parallelogram linkage (mDPL) is proposed to allow the device to mimic the natural workspace of an arm. Additionally, a pulley drive and weight compensation system were created to place the motor on the users' back reducing the hindering weight of the actuators on their arms. Our experiments demonstrated this arm-swing rehabilitator could successfully induce arm movements at different arm configurations with low (0.67 Hz) and high (1.1 Hz) frequencies corresponding to slow and fast walking.

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一种用于步态训练中诱导手臂摆动的可穿戴上肢康复装置。
本文介绍了一种可穿戴康复设备的概念验证原型的设计和验证,该设备在步态康复过程中结合了手臂摆动。与目前用于上肢功能康复的固定外骨骼不同,在步态中辅助手臂摆动需要诱导更快的手臂弯曲/伸展运动,同时保持用户的手臂在其他方向上不受约束。我们开发了一种便携式欠驱动系统,具有大工作空间和反向驱动功能,可诱导手臂摆动。其宽阔的工作空间使佩戴者可以在没有任何限制的情况下轻松地向不同方向移动手臂。提出了一种改进的双平行四边形连杆(mDPL),使该装置能够模拟手臂的自然工作空间。此外,还创建了一个皮带轮驱动和重量补偿系统,将电机放在用户的背上,减少了致动器在他们手臂上的阻碍重量。我们的实验表明,这种手臂摆动康复器可以成功地在不同的手臂配置下诱导手臂运动,低(0.67 Hz)和高(1.1 Hz)频率对应于慢速和快速行走。
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A Body-Powered Wrist-Driven Supernumerary Robotic Finger. A Case Study of Error Fields: A Three-Dimensional Personalized Robotic Therapy. A Control Method for Transtibial Prostheses with Bilateral Leg Data. A Customizable Fitting Protocol for the Body-Machine Interface. A First Design of the Inertially Correct Testbed Arm Platform for Testing of Wearable Devices.
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