Taylor Leah, Miller Emily, Kaufman Kenton R
Motion Analysis Laboratory, Department of Orthopedic Surgery, Mayo Clinic, Motion Analysis Laboratory, Rochester, MN 55905, USA.
Motion Analysis Laboratory, Department of Orthopedic Surgery, Mayo Clinic, Motion Analysis Laboratory, Rochester, MN 55905, USA.
Gait Posture. 2017 Sep;57:80-84. doi: 10.1016/j.gaitpost.2017.05.026. Epub 2017 May 26.
Optical motion capture systems are used to assess human motion. While these systems provide a reliable analysis, they limit collection to a laboratory based setting. Devices such as Inertial Measurement Units (IMUs) have been developed as alternative tools. Commercially available IMUs are utilized for a variety of applications; however limited work has been done to determine the reliability of these devices. The objective of this study was to assess the accuracy and precision of a commercially available IMU, containing tri-axial accelerometers, gyroscopes, and magnetometers, under controlled static and dynamic conditions. The sensor output was validated against the gold standard measures of custom made mechanical testing apparatuses. The IMUs provide an accurate (within 0.6°) and precise (within 0.1°) measurement of static sensor orientation and an accurate (within 4.4° per second) and precise (within 0.2° per second) representation of angular velocity. The sensors are more accurate at lower velocities, but the percent error remains relatively constant across all angular velocities. Inclusion of IMUs as an appropriate measurement tool should be based on the application, specific demands and necessary reliability.
光学动作捕捉系统用于评估人体动作。虽然这些系统能提供可靠的分析,但它们将数据采集限制在基于实验室的环境中。诸如惯性测量单元(IMU)之类的设备已被开发出来作为替代工具。市面上的惯性测量单元被用于各种应用;然而,在确定这些设备的可靠性方面所做的工作有限。本研究的目的是在受控的静态和动态条件下,评估一种市售惯性测量单元(包含三轴加速度计、陀螺仪和磁力计)的准确性和精确性。传感器输出结果与定制机械测试设备的金标准测量值进行了验证。惯性测量单元能够对静态传感器方向进行准确(误差在0.6°以内)且精确(误差在0.1°以内)的测量,对角速度进行准确(每秒误差在4.4°以内)且精确(每秒误差在0.2°以内)的呈现。传感器在较低速度下更准确,但在所有角速度下,百分比误差相对保持恒定。是否将惯性测量单元作为合适的测量工具应基于应用、特定需求和必要的可靠性来决定。