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使用模块化、可反向驱动的动力髋膝关节矫形器增强自主运动。

Enhancing Voluntary Motion with Modular, Backdrivable, Powered Hip and Knee Orthoses.

作者信息

Nesler Christopher, Thomas Gray, Divekar Nikhil, Rouse Elliott J, Gregg Robert D

机构信息

Department of Electrical Engineering and Computer Science and the Robotics Institute.

Department of Mechanical Engineering and the Robotics Institute, University of Michigan, Ann Arbor, MI 48109.

出版信息

IEEE Robot Autom Lett. 2022 Jul;7(3):6155-6162. doi: 10.1109/LRA.2022.3145580. Epub 2022 Jan 25.

Abstract

Mobility disabilities are prominent in society with wide-ranging deficits, motivating modular, partial-assist, lower-limb exoskeletons for this heterogeneous population. This paper introduces the Modular Backdrivable Lower-limb Unloading Exoskeleton (M-BLUE), which implements high torque, low mechanical impedance actuators on commercial orthoses with sheet metal modifications to produce a variety of hip- and/or knee-assisting configurations. Benchtop system identification verifies the desirable backdrive properties of the actuator, and allows for torque prediction within ±0.4 Nm. An able-bodied human subject experiment demonstrates that three unilateral configurations of M-BLUE (hip only, knee only, and hip-knee) with a simple gravity compensation controller can reduce muscle EMG readings in a lifting and lowering task relative to the bare condition. Reductions in mean muscular effort and peak muscle activation were seen across the primary squat musculature (excluding biceps femoris), demonstrating the potential to reduce fatigue leading to poor lifting posture. These promising results motivate applications of M-BLUE to additional populations, and the expansion of M-BLUE to bilateral and ankle configurations.

摘要

行动障碍在社会中很突出,存在广泛的功能缺陷,这促使人们为这类异质人群研发模块化、部分辅助的下肢外骨骼。本文介绍了模块化可回驱下肢卸载外骨骼(M-BLUE),它通过对商用矫形器进行钣金改造,采用高扭矩、低机械阻抗的 actuator,以产生多种髋部和/或膝部辅助配置。台式系统识别验证了 actuator 所需的回驱特性,并能在±0.4 Nm 范围内进行扭矩预测。一项健全人体受试者实验表明,采用简单重力补偿控制器的 M-BLUE 的三种单侧配置(仅髋部、仅膝部和髋-膝部)在升降任务中相对于无辅助状态可降低肌肉肌电图读数。在主要深蹲肌肉组织(不包括股二头肌)中观察到平均肌肉用力和肌肉激活峰值的降低,表明有潜力减少导致不良举姿的疲劳。这些有前景的结果促使 M-BLUE 应用于更多人群,并将 M-BLUE 扩展到双侧和脚踝配置。

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