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A TECHNIQUE TO DETECT FATIGUE IN THE LOWER LIMBS

机译:下肢疲劳检测技术

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摘要

As muscles fatigue, their passive and active mechanical properties change increasing the susceptibility of the human body to damage. The state-of-the-art technique for muscle fatigue detection, EMG signals, is cumbersome. This paper presents a technique to detect fatigue by tracking a kinematic parameter of the musculoskeletal system. The method uses the time-history of a single joint angle to detect fatigue in the lower limbs. A sensor is mounted to the knee joint to measure the knee flexion angle. Time delay embedding is used to track the orbit of knee joint motions in a reconstructed phase-space. The reconstructed phase-space allows us to obtain information about other body parts and joints of the lower limb in addition to the knee joint, since they are all connected in an open kinematic chain. Long-time drift in the orbit location and shape in phase-space is quantified and used as a measure of lower limb fatigue. The proposed technique presents a mobile, wireless, and cheap method to assess fatigue that can act as an early warning system for the lower limb.
机译:随着肌肉疲劳,它们的被动和主动机械性能发生变化,从而增加了人体对损伤的敏感性。 EMG信号用于肌肉疲劳检测的最新技术很麻烦。本文提出了一种通过跟踪肌肉骨骼系统的运动学参数来检测疲劳的技术。该方法使用单个关节角的时间历史来检测下肢的疲劳。传感器安装到膝盖关节以测量膝盖的弯曲角度。时间延迟嵌入用于在重建的相空间中跟踪膝关节运动的轨道。重建的相空间使我们可以获得除膝关节之外的其他下肢其他身体部位和关节的信息,因为它们都以开放的运动链连接。量化了相空间中轨道位置和形状的长时间漂移,并将其用作下肢疲劳的量度。所提出的技术提出了一种移动,无线且便宜的方法来评估疲劳,该方法可以作为下肢的预警系统。

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