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X射线计算机断层扫描仪器性能评估,第二部分:对旋转台误差的敏感性。

X-ray Computed Tomography Instrument Performance Evaluation, Part II: Sensitivity to Rotation Stage Errors.

作者信息

Muralikrishnan Bala, Shilling Meghan, Phillips Steve, Ren Wei, Lee Vincent, Kim Felix

机构信息

National Institute of Standards and Technology, Gaithersburg, MD 20899 USA.

出版信息

J Res Natl Inst Stand Technol. 2019 Jul 11;124:1-13. doi: 10.6028/jres.124.015. eCollection 2019.

Abstract

The development of standards for evaluating the performance of X-ray computed tomography (XCT) instruments is ongoing within the American Society of Mechanical Engineers (ASME) and the International Organization for Standardization (ISO) working committees. A key challenge in developing documentary standards is to identify test procedures that are sensitive to known error sources. In Part I of this work, we described the effect of geometry errors associated with the detector and determined their influence through simulations on sphere center-to-center distance errors and sphere form errors for spheres located in the tomographically reconstructed measurement volume. We also introduced a new simulation method, the single-point ray tracing method, to efficiently perform the distance and form error computations and presented data validating the method. In this second part, also based on simulation studies, we describe the effect of errors associated with the rotation stage on sphere center-to-center distance errors and sphere form errors for spheres located in the tomographically reconstructed measurement volume. We recommend optimal sphere center locations that are most sensitive to rotation stage errors for consideration by documentary standards committees in the development of test procedures for performance evaluation.

摘要

美国机械工程师协会(ASME)和国际标准化组织(ISO)的工作委员会正在制定X射线计算机断层扫描(XCT)仪器性能评估标准。制定文件标准的一个关键挑战是确定对已知误差源敏感的测试程序。在这项工作的第一部分中,我们描述了与探测器相关的几何误差的影响,并通过模拟确定了它们对位于断层扫描重建测量体积中的球体中心距误差和球体形状误差的影响。我们还引入了一种新的模拟方法,即单点射线追踪法,以有效地进行距离和形状误差计算,并给出了验证该方法的数据。在第二部分中,同样基于模拟研究,我们描述了与旋转台相关的误差对位于断层扫描重建测量体积中的球体中心距误差和球体形状误差的影响。我们推荐了对旋转台误差最敏感的最佳球体中心位置,以供文件标准委员会在制定性能评估测试程序时考虑。

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