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Applications of Statistical Modeling in Iterative CT Image Reconstruction.

机译:统计建模在迭代CT图像重建中的应用。

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摘要

Traditionally, x-ray CT images are produced by an algorithm called filtered back projection, or FBP. FBP is an analytical solution to the idealized CT image reconstruction problem, the inverse problem of turning raw x-ray measurements into a full 3-dimensional (3D) image, and is derived assuming a continuous set of noiseless measurements. However real CT data are noisy and biased, especially so if the scans are performed at low x-ray dose, and advanced statistical estimation techniques have been shown to produce higher quality images than FBP. This work presents two applications of statistical modeling in CT image reconstruction. The first application discusses the statistics of CT data noise, and compares the performance of several common models for estimation in a simplified 1D experiment. The second application concerns modeling temporal CT data, in which the measured data typically contain redundancies. It proposes an estimation method that exploits these redundancies to address two key challenges in CT image reconstruction: reducing noise and lowering computation time. We demonstrate this noise reduction analytically and through experimental simulations. In addition, a third study validates the use of the statistical models used in this work by comparing them to measured data from a clinical CT scanner. Overall, these methods contribute to the methodology of statistical CT image reconstruction to enable ultra-low dose x-ray CT imaging.
机译:传统上,X射线CT图像是通过称为滤波反投影(FBP)的算法生成的。 FBP是理想化CT图像重建问题(将原始X射线测量结果转换为完整3维(3D)图像的反问题)的一种解析解决方案,它是在假设连续测量无噪声的情况下得出的。但是,实际的CT数据嘈杂且有偏差,尤其是如果在低X射线剂量下进行扫描时,高级统计估计技术已显示出比FBP更高质量的图像。这项工作提出了统计建模在CT图像重建中的两个应用。第一个应用程序讨论了CT数据噪声的统计信息,并在简化的一维实验中比较了几种常用模型的性能以进行估计。第二个应用程序涉及对时间CT数据进行建模,其中测得的数据通常包含冗余。它提出了一种估计方法,该方法利用这些冗余来解决CT图像重建中的两个关键挑战:降低噪声和缩短计算时间。我们通过分析和实验仿真来证明这种降噪效果。此外,第三项研究通过将其与临床CT扫描仪的测量数据进行比较,验证了本工作中使用的统计模型的使用。总体而言,这些方法有助于统计CT图像重建的方法,以实现超低剂量X射线CT成像。

著录项

  • 作者

    Perlmutter, David Simon.;

  • 作者单位

    University of Washington.;

  • 授予单位 University of Washington.;
  • 学科 Electrical engineering.;Radiology.;Biblical studies.
  • 学位 Masters
  • 年度 2015
  • 页码 49 p.
  • 总页数 49
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:52:28

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