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Estimation of 3D Knee Joint Angles during Cycling Using Inertial Sensors: Accuracy of a Novel Sensor-to-Segment Calibration Procedure Based on Pedaling Motion

机译:使用惯性传感器估算骑车过程中的3D膝关节角度:基于踏板运动的新型传感器到段校准程序的准确性

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摘要

This paper presents a novel sensor-to-segment calibration procedure for inertial sensor-based knee joint kinematics analysis during cycling. This procedure was designed to be feasible in-field, autonomously, and without any external operator or device. It combines a static standing up posture and a pedaling task. The main goal of this study was to assess the accuracy of the new sensor-to-segment calibration method (denoted as the ‘cycling’ method) by calculating errors in terms of body-segment orientations and 3D knee joint angles using inertial measurement unit (IMU)-based and optoelectronic-based motion capture. To do so, 14 participants were evaluated during pedaling motion at a workload of 100 W, which enabled comparisons of the cycling method with conventional calibration methods commonly employed in gait analysis. The accuracy of the cycling method was comparable to that of other methods concerning the knee flexion/extension angle, and did not exceed 3.8°. However, the cycling method presented the smallest errors for knee internal/external rotation (6.65 ± 1.94°) and abduction/adduction (5.92 ± 2.85°). This study demonstrated that a calibration method based on the completion of a pedaling task combined with a standing posture significantly improved the accuracy of 3D knee joint angle measurement when applied to cycling analysis.
机译:本文提出了一种新的传感器到段的校准程序,用于基于惯性传感器的膝关节运动学分析。该程序被设计为在现场,自动且无需任何外部操作员或设备的情况下可行。它结合了静态站立姿势和踩踏任务。这项研究的主要目的是通过使用惯性测量单元计算人体分段方向和3D膝关节角度方面的误差来评估新的传感器到分段的校准方法(称为“循环”方法)的准确性(基于IMU)和基于光电的运动捕获。为此,在踏板运动期间以100 W的工作负荷对14名参与者进行了评估,这使骑行方法与步态分析中常用的常规校准方法进行了比较。关于膝盖弯曲/伸展角度,骑车方法的准确性与其他方法相当,并且不超过3.8°。但是,骑自行车的方法对膝盖的内/外旋转(6.65±1.94°)和外展/内收(5.92±2.85°)的误差最小。这项研究表明,基于踩踏任务完成与站立姿势相结合的校准方法,在将其应用于自行车运动分析时,可显着提高3D膝关节角度测量的准确性。

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