A method for measuring human arm's mechanical impedance for assessment of motor rehabilitation

Hossein Mousavi Hondori, Ling Shih-Fu
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引用次数: 20

Abstract

This research work aims to develop a new tool for assessment of human motor function with a focus on the upper limb. For that purpose, Simultaneous Sensing cum Actuating technology (SSA) will be used for measuring force, velocity, and especially mechanical impedance of the limb. Impedance measured at the hand point while the upper limb performing a motion task is a quality indicator of the limb's motor function. Conventional method of measuring mechanical impedance which requires a force and a motion sensor mounting on fixed base points is not applicable here. This method overcomes the difficulty. Here an electrical motor is used as sensor-actuator which carries a mechanical load (here human's limb); the motor plays the role of a sensor as well, so we calibrate the "transduction matrix" of the motor and will measure the mechanical impedance of the load through measuring the electrical impedance of the electrical motor. In this paper we explain how the appropriate apparatus was designed and tailored for this application and how the method was validated. At the end experimental result of measuring mechanical impedance of a human subject is presented.
一种测量人体手臂机械阻抗以评估运动康复的方法
本研究旨在开发一种以上肢为重点的人体运动功能评估新工具。为此,同步传感与驱动技术(SSA)将用于测量肢体的力、速度,特别是机械阻抗。当上肢执行运动任务时,在手点测量的阻抗是肢体运动功能的质量指标。传统的测量机械阻抗的方法需要在固定的基点上安装一个力和运动传感器,在这里不适用。这种方法克服了困难。这里使用电机作为传感器-执行器,它承载机械负载(这里是人的肢体);电机也扮演传感器的角色,所以我们校准电机的“转导矩阵”,并通过测量电机的电阻抗来测量负载的机械阻抗。在本文中,我们解释了如何为这种应用设计和定制合适的设备,以及如何验证该方法。最后给出了测量人体机械阻抗的实验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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