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首页> 外文期刊>Journal of NeuroEngineering Rehabilitation >Validation of the angular measurements of a new inertial-measurement-unit based rehabilitation system: comparison with state-of-the-art gait analysis
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Validation of the angular measurements of a new inertial-measurement-unit based rehabilitation system: comparison with state-of-the-art gait analysis

机译:验证基于惯性测量单元的新型康复系统的角度测量:与最新步态分析的比较

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Background Several rehabilitation systems based on inertial measurement units (IMU) are entering the market for the control of exercises and to measure performance progression, particularly for recovery after lower limb orthopaedic treatments. IMU are easy to wear also by the patient alone, but the extent to which IMU’s malpositioning in routine use can affect the accuracy of the measurements is not known. A new such system (Riablo?, CoRehab, Trento, Italy), using audio-visual biofeedback based on videogames, was assessed against state-of-the-art gait analysis as the gold standard. Methods The sensitivity of the system to errors in the IMU’s position and orientation was measured in 5 healthy subjects performing two hip joint motion exercises. Root mean square deviation was used to assess differences in the system’s kinematic output between the erroneous and correct IMU position and orientation. In order to estimate the system’s accuracy, thorax and knee joint motion of 17 healthy subjects were tracked during the execution of standard rehabilitation tasks and compared with the corresponding measurements obtained with an established gait protocol using stereophotogrammetry. Results A maximum mean error of 3.1?±?1.8 deg and 1.9?±?0.8 deg from the angle trajectory with correct IMU position was recorded respectively in the medio-lateral malposition and frontal-plane misalignment tests. Across the standard rehabilitation tasks, the mean distance between the IMU and gait analysis systems was on average smaller than 5°. Conclusions These findings showed that the tested IMU based system has the necessary accuracy to be safely utilized in rehabilitation programs after orthopaedic treatments of the lower limb.
机译:背景技术几种基于惯性测量单元(IMU)的康复系统正在进入市场,以控制运动并测量性能进展,尤其是下肢骨科治疗后的恢复情况。 IMU也很容易由患者自己佩戴,但是IMU在常规使用中的位置不当会影响测量的准确性尚不清楚。使用最新的步态分析作为金标准,评估了一种新的此类系统(Riablo?,CoRehab,意大利特伦托),使用基于视频游戏的视听生物反馈。方法在5位进行两次髋关节运动练习的健康受试者中,测量了系统对IMU位置和方向错误的敏感性。均方根偏差用于评估错误和正确的IMU位置和方向之间系统运动输出的差异。为了评估系统的准确性,在执行标准康复任务期间跟踪了17名健康受试者的胸部和膝关节运动,并将其与使用立体摄影测量法通过既定步态协议获得的相应测量结果进行了比较。结果在正确的IMU位置和前平面错位测试中,分别记录了与正确IMU位置的角度轨迹相差的最大平均误差3.1?±?1.8度和1.9?±?0.8度。在标准的康复任务中,IMU和步态分析系统之间的平均距离平均小于5°。结论这些发现表明,经过测试的基于IMU的系统具有必要的准确性,可以在下肢骨科治疗后安全地用于康复计划中。

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