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用于测量体内动态关节运动学的电磁位置跟踪装置的评估

Evaluation of an electromagnetic position tracking device for measuring in vivo, dynamic joint kinematics.

作者信息

Schuler N B, Bey M J, Shearn J T, Butler D L

机构信息

Department of Biomedical Engineering, University of Cincinnati, OH 45221, USA.

出版信息

J Biomech. 2005 Oct;38(10):2113-7. doi: 10.1016/j.jbiomech.2004.09.015.

Abstract

An electromagnetic position tracking device was evaluated to determine its static and dynamic accuracy and reliability for applications related to measuring in vivo joint kinematics. The device detected the position and orientation of small coiled sensors, maintained in an electromagnetic field. System output was measured against known translations or rotations throughout the measurement volume. Average translational errors during static testing were 0.1 +/- 0.04, 0.2 +/- 0.17, and 0.8 +/- 0.81 mm (mean+/-SD) for sensors 50, 300, and 550 mm away from the field generator, respectively. Average rotational errors were 0.4 +/- 0.31 degrees, 0.4 +/- 0.21 degrees, and 0.9 +/- 0.85 degrees (mean +/- SD) for sensors located at the same distances. Since we intended to use this system in an animal walking on a treadmill, we incrementally moved the sensors under various treadmill conditions. The effects of treadmill operation on translational accuracy were found to be negligible. The effects of dynamic motions on sensor-to-sensor distance were also assessed for future data collection in the animal. Sensor-to-sensor distance showed standard deviations of 2.6 mm and a range of 13 mm for the highest frequency tested (0.23 Hz). We conclude that this system is useful for static or slow dynamic motions, but is of limited use for obtaining gait kinematics at higher speeds.

摘要

对一种电磁位置跟踪设备进行了评估,以确定其在测量体内关节运动学相关应用中的静态和动态精度及可靠性。该设备检测处于电磁场中的小型线圈传感器的位置和方向。在整个测量空间内,根据已知的平移或旋转来测量系统输出。在静态测试中,距离场发生器50、300和550毫米处的传感器的平均平移误差分别为0.1±0.04、0.2±0.17和0.8±0.81毫米(均值±标准差)。位于相同距离处的传感器的平均旋转误差分别为0.4±0.31度、0.4±0.21度和0.9±0.85度(均值±标准差)。由于我们打算在跑步机上行走的动物身上使用该系统,因此在各种跑步机条件下逐步移动传感器。发现跑步机运行对平移精度的影响可忽略不计。还评估了动态运动对动物未来数据采集中传感器间距离的影响。对于测试的最高频率(0.23赫兹),传感器间距离的标准差为2.6毫米,范围为13毫米。我们得出结论,该系统适用于静态或缓慢的动态运动,但在获取更高速度的步态运动学时用途有限。

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