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Optimizing photon fluence measurements for the accurate determination of detective quantum efficiency

机译:优化光子注量测量以准确确定探测量子效率

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摘要

Our goal was to evaluate the error contributed by photon fluence measurements to the detective quantum efficiency (DQE) of an x-ray imaging system. The investigation consisted of separate error analyses for the exposure and spectrum measurements that determine the photon fluence. Methods were developed for each to determine the number of measurements required to achieve an acceptable error. A new method for calculating the magnification factor in the exposure measurements was presented and compared to the existing method. The new method not only produces much lower error at small source-to-image distances (SIDs) such as clinical systems, but is also independent of SID. The exposure and spectra results were combined to determine the photon fluence error contribution to the DQE of 4%. The error in this study is small because the measurements resulted from precisely controlled experimental procedures designed to minimize the error. However, these procedures are difficult to follow in clinical environments, and application of this method on clinical systems could therefore provide important insight into error reduction. This investigation was focused on the error in the photon fluence contribution to the DQE, but the error analysis method can easily be extended to a wide range of applications.
机译:我们的目标是评估光子注量测量对X射线成像系统的探测量子效率(DQE)造成的误差。该研究包括对曝光和光谱测量进行单独的误差分析,以确定光子通量。为每种方法开发了确定达到可接受误差所需的测量数量的方法。提出了一种计算曝光测量放大倍数的新方法,并将其与现有方法进行了比较。新方法不仅在诸如临床系统之类的小源到图像距离(SID)上产生了低得多的误差,而且还独立于SID。结合曝光和光谱结果,确定光子通量误差对DQE的贡献为4%。这项研究中的误差很小,因为测量结果是通过精确控制实验程序而产生的,这些程序旨在将误差降至最低。但是,这些过程在临床环境中很难遵循,因此该方法在临床系统上的应用可以为减少错误提供重要的见识。这项研究的重点是光子通量对DQE贡献的误差,但是误差分析方法可以轻松地扩展到广泛的应用领域。

著录项

  • 来源
    《Journal of electronic imaging》 |2009年第4期|043010.1-043010.9|共9页
  • 作者单位

    University of Oklahoma Center for Bioengineering and School of Electrical and Computer Engineering 202 West Boyd Street, Room 219 Norman, Oklahoma 73019;

    University of Oklahoma Center for Bioengineering and School of Electrical and Computer Engineering 202 West Boyd Street, Room 219 Norman, Oklahoma 73019;

    UT MD Anderson Cancer Center Imaging Physics Department Houston, Texas 77030;

    University of Alabama at Birmingham Department of Radiology Birmingham, Alabama 35233;

    University of Oklahoma Center for Bioengineering and School of Electrical and Computer Engineering 202 West Boyd Street, Room 219 Norman, Oklahoma 73019;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 01:18:03

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