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在大测量体积中配备42个或21个摄像头的光学运动捕捉系统的精度图。

Accuracy map of an optical motion capture system with 42 or 21 cameras in a large measurement volume.

作者信息

Aurand Alexander M, Dufour Jonathan S, Marras William S

机构信息

The Ohio State University, Integrated Systems Engineering, Spine Research Institute, Columbus, OH, United States.

The Ohio State University, Integrated Systems Engineering, Spine Research Institute, Columbus, OH, United States.

出版信息

J Biomech. 2017 Jun 14;58:237-240. doi: 10.1016/j.jbiomech.2017.05.006. Epub 2017 May 17.

Abstract

Optical motion capture is commonly used in biomechanics to measure human kinematics. However, no studies have yet examined the accuracy of optical motion capture in a large capture volume (>100m), or how accuracy varies from the center to the extreme edges of the capture volume. This study measured the dynamic 3D errors of an optical motion capture system composed of 42 OptiTrack Prime 41 cameras (capture volume of 135m) by comparing the motion of a single marker to the motion reported by a ThorLabs linear motion stage. After spline interpolating the data, it was found that 97% of the capture area had error below 200μm. When the same analysis was performed using only half (21) of the cameras, 91% of the capture area was below 200μm of error. The only locations that exceeded this threshold were at the extreme edges of the capture area, and no location had a mean error exceeding 1mm. When measuring human kinematics with skin-mounted markers, uncertainty of marker placement relative to underlying skeletal features and soft tissue artifact produce errors that are orders of magnitude larger than the errors attributed to the camera system itself. Therefore, the accuracy of this OptiTrack optical motion capture system was found to be more than sufficient for measuring full-body human kinematics with skin-mounted markers in a large capture volume (>100m).

摘要

光学运动捕捉在生物力学中常用于测量人体运动学。然而,尚未有研究考察过光学运动捕捉在大捕捉体积(>100立方米)下的准确性,也未研究过准确性在捕捉体积从中心到边缘区域是如何变化的。本研究通过将单个标记的运动与ThorLabs直线运动平台报告的运动进行比较,测量了由42台OptiTrack Prime 41相机组成的光学运动捕捉系统(捕捉体积为135立方米)的动态三维误差。对数据进行样条插值后发现,97%的捕捉区域误差低于200微米。当仅使用一半(21台)相机进行相同分析时,91%的捕捉区域误差低于200微米。唯一超出该阈值的位置是捕捉区域的边缘,且没有任何位置的平均误差超过1毫米。在用皮肤表面标记测量人体运动学时,标记相对于潜在骨骼特征的放置不确定性以及软组织伪影所产生的误差,比归因于相机系统本身的误差大几个数量级。因此,发现这种OptiTrack光学运动捕捉系统的准确性足以在大捕捉体积(>100立方米)下用皮肤表面标记测量全身人体运动学。

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