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惯性测量系统在功能性运动中量化下肢关节角度的可靠性和有效性。

Reliability and Validity of an Inertial Measurement System to Quantify Lower Extremity Joint Angle in Functional Movements.

机构信息

Sports Coaching College, Beijing Sport University, 48 Xinxi Road, Beijing 100084, China.

AI Sports Engineering Lab, School of Sports Engineering, Beijing Sport University, 48 Xinxi Road, Beijing 100084, China.

出版信息

Sensors (Basel). 2022 Jan 23;22(3):863. doi: 10.3390/s22030863.

Abstract

The purpose of this research was to determine if the commercially available Perception Neuron motion capture system was valid and reliable in clinically relevant lower limb functional tasks. Twenty healthy participants performed two sessions on different days: gait, squat, single-leg squat, side lunge, forward lunge, and counter-movement jump. Seven IMUs and an OptiTrack system were used to record the three-dimensional joint kinematics of the lower extremity. To evaluate the performance, the multiple correlation coefficient (CMC) and the root mean square error (RMSE) of the waveforms as well as the difference and intraclass correlation coefficient (ICC) of discrete parameters were calculated. In all tasks, the CMC revealed fair to excellent waveform similarity (0.47-0.99) and the RMSE was between 3.57° and 13.14°. The difference between discrete parameters was lower than 14.54°. The repeatability analysis of waveforms showed that the CMC was between 0.54 and 0.95 and the RMSE was less than 5° in the frontal and transverse planes. The ICC of all joint angles in the IMU was general to excellent (0.57-1). Our findings showed that the IMU system might be utilized to evaluate lower extremity 3D joint kinematics in functional motions.

摘要

本研究旨在确定市售的 Perception Neuron 运动捕捉系统在临床相关的下肢功能任务中是否具有有效性和可靠性。二十名健康参与者在不同的两天内进行了两次测试:步态、深蹲、单腿深蹲、侧弓步、前弓步和反向跳跃。七个惯性测量单元(IMU)和一个 OptiTrack 系统被用来记录下肢的三维关节运动学。为了评估性能,计算了多个相关系数(CMC)和波形的均方根误差(RMSE)以及离散参数的差值和组内相关系数(ICC)。在所有任务中,CMC 显示出良好到极好的波形相似性(0.47-0.99),RMSE 介于 3.57°到 13.14°之间。离散参数之间的差异小于 14.54°。波形的重复性分析表明,CMC 在 0.54 到 0.95 之间,在额状面和横断面上的 RMSE 小于 5°。IMU 中所有关节角度的 ICC 一般到极好(0.57-1)。我们的研究结果表明,IMU 系统可能用于评估功能性运动中下肢的三维关节运动学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f72a/8838175/99b27686e703/sensors-22-00863-g0A1.jpg

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