Precision, repeatability and accuracy of Optotrak® optical motion tracking systems

Jillian Schmidt, Devin R. Berg, H. Ploeg, L. Ploeg
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引用次数: 51

Abstract

In the field of biomechanics, optical motion tracking systems are commonly used to record human motion and assist in surgical navigation. Recently, motion tracking systems have been used to track implant and bone motion on a micron-level. The present study evaluated four different Optotrak® motion tracking systems to determine the precision, repeatability and accuracy under static testing conditions. The distance between the camera systems and the rigid body, as well as the tilt angle of the rigid body, did affect the resulting precision, repeatability and accuracy of the camera systems. The precision and repeatability, calculated as the within-trial and between-trial standard deviations, respectively, were less than 30 µm; with some configurations producing precision and repeatability less than 1 µm. The accuracy was less than 0.53% of the total displacement for the in-plane motion and less than 1.56% of the total displacement for the out-of-plane motion.
Optotrak®光学运动跟踪系统的精度、可重复性和准确性
在生物力学领域,光学运动跟踪系统通常用于记录人体运动和辅助手术导航。最近,运动跟踪系统已被用于在微米水平上跟踪植入物和骨骼的运动。本研究评估了四种不同的Optotrak®运动跟踪系统,以确定静态测试条件下的精度、可重复性和准确性。相机系统与刚体之间的距离以及刚体的倾斜角确实会影响相机系统的精度、可重复性和精度。精密度和重复性分别以试验内标准差和试验间标准差计算,均小于30µm;某些配置产生的精度和重复性小于1µm。面内运动和面外运动的精度分别小于总位移的0.53%和1.56%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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