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试验后解剖框架对齐程序,用于比较来自磁/惯性测量单元和基于摄像头系统的三维关节角度测量结果。

Post-trial anatomical frame alignment procedure for comparison of 3D joint angle measurement from magnetic/inertial measurement units and camera-based systems.

作者信息

Li Qingguo, Zhang Jun-Tian

机构信息

Department of Mechanical and Materials Engineering, Queen's University, Kingston, ON, Canada. Human Mobility Research Centre, Queen's University and Kingston General Hospital, Kingston, ON, Canada.

出版信息

Physiol Meas. 2014 Nov;35(11):2255-68. doi: 10.1088/0967-3334/35/11/2255. Epub 2014 Oct 23.

Abstract

Magnetic and inertial measurement units (MIMUs) have been widely used as an alternative to traditional camera-based motion capture systems for 3D joint kinematics measurement. Since these sensors do not directly measure position, a pre-trial anatomical calibration, either with the assistance of a special protocol/apparatus or with another motion capture system is required to establish the transformation matrices between the local sensor frame and the anatomical frame (AF) of each body segment on which the sensors are attached. Because the axes of AFs are often used as the rotational axes in the joint angle calculation, any difference in the AF determination will cause discrepancies in the calculated joint angles. Therefore, a direct comparison of joint angles between MIMU systems and camera-based systems is less meaningful because the calculated joint angles contain a systemic error due to the differences in the AF determination. To solve this problem a new post-trial AF alignment procedure is proposed. By correcting the AF misalignments, the joint angle differences caused by the difference in AF determination are eliminated and the remaining discrepancies are mainly from the measurement accuracy of the systems themselves. Lower limb joint angles from 30 walking trials were used to validate the effectiveness of the proposed AF alignment procedure. This technique could serve as a new means for calibrating magnetic/inertial sensor-based motion capture systems and correcting for AF misalignment in scenarios where joint angles are compared directly.

摘要

磁和惯性测量单元(MIMUs)已被广泛用作传统基于相机的运动捕捉系统的替代方案,用于三维关节运动学测量。由于这些传感器不直接测量位置,因此需要在特殊协议/设备的辅助下或使用另一个运动捕捉系统进行预试验解剖校准,以建立局部传感器框架与附着传感器的每个身体节段的解剖框架(AF)之间的变换矩阵。因为AF的轴通常在关节角度计算中用作旋转轴,所以AF确定中的任何差异都会导致计算出的关节角度出现差异。因此,MIMU系统和基于相机的系统之间关节角度的直接比较意义不大,因为由于AF确定中的差异,计算出的关节角度包含系统误差。为了解决这个问题,提出了一种新的试验后AF对齐程序。通过校正AF未对齐,消除了由AF确定差异引起的关节角度差异,其余差异主要来自系统本身的测量精度。使用30次步行试验的下肢关节角度来验证所提出的AF对齐程序的有效性。该技术可作为校准基于磁/惯性传感器的运动捕捉系统以及在直接比较关节角度的场景中校正AF未对齐的新方法。

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