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一种用于评估可穿戴外骨骼关节运动学角度传感器性能的新方法。

A novel method to assess angle sensor performance for wearable exoskeletal joint kinematics.

作者信息

Bolus Nicholas B, Kogler Geza F, Inan Omer T

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2016 Aug;2016:3109-3112. doi: 10.1109/EMBC.2016.7591387.

Abstract

Full range of motion (ROM) at a joint is necessary for efficient and adaptive movement; as such, it is an essential clinical evaluation measure for assessing an individual's motor function, which can be affected by any number of musculoskeletal injuries and neuropathies. Measurement of joint ROM in the clinic has classically been accomplished statically through the use of a manual goniometer. More recent efforts in the fields of prosthetics and orthotics have demonstrated the potential utility of wearable systems (e.g., exoskeletons, orthoses) designed to control joint motion(s) and instrumented with sensors capable of capturing joint angle data dynamically. This paper presents a novel methodology to assess the performance of a variety of angle sensors in the context of wearable joint angle measurement, particularly for use in articulated ankle-foot orthoses (AFOs). Dynamic and static errors are considered, and a cost-benefit analysis of a variety of off-the-shelf and custom-built sensors is reported to provide comparative data for selecting a sensor to measure joint motion in wearable exoskeletal systems. All of the sensors considered reported angular errors below 5° across all tests, though the optical encoder consistently demonstrated the highest accuracy (<;0.7°) and precision, and both the resistive potentiometers exhibited the highest error in the dynamic tests (1.5° to 4°). The anisotropic magnetoresistive (AMR) sensor demonstrated the highest performance-to-cost ratio.

摘要

关节的全范围运动(ROM)对于高效且适应性强的运动是必要的;因此,它是评估个体运动功能的一项重要临床评估指标,而个体运动功能可能会受到多种肌肉骨骼损伤和神经病变的影响。在临床上,传统上是通过使用手动测角器静态测量关节ROM。假肢和矫形器领域的最新研究表明,可穿戴系统(如外骨骼、矫形器)具有潜在的实用价值,这些系统旨在控制关节运动,并配备了能够动态捕捉关节角度数据的传感器。本文提出了一种新颖的方法,用于在可穿戴关节角度测量的背景下评估各种角度传感器的性能,特别是用于关节式踝足矫形器(AFO)。考虑了动态和静态误差,并报告了对各种现成和定制传感器的成本效益分析,以提供比较数据,用于选择在可穿戴外骨骼系统中测量关节运动的传感器。所有被考虑的传感器在所有测试中的角度误差均低于5°,不过光学编码器始终显示出最高的精度(<0.7°)和精密度,并且两个电阻电位计在动态测试中表现出最高的误差(1.5°至4°)。各向异性磁阻(AMR)传感器表现出最高的性价比。

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