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Computational tools and methods for objective assessment of image quality in x-ray CT and SPECT.

机译:用于对X射线CT和SPECT图像质量进行客观评估的计算工具和方法。

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摘要

Computational tools of use in the objective assessment of image quality for tomography systems were developed for computer processing units (CPU) and graphics processing units (GPU) in the image quality lab at the University of Arizona. Fast analytic x-ray projection code called IQCT was created to compute the mean projection image for cone beam multi-slice helical computed tomography (CT) scanners. IQCT was optimized to take advantage of the massively parallel architecture of GPUs. CPU code for computing single photon emission computed tomography (SPECT) projection images was written calling upon previous research in the image quality lab.;IQCT and the SPECT modeling code were used to simulate data for multi-modality SPECT/CT observer studies. The purpose of these observer studies was to assess the benefit in image quality of using attenuation information from a CT measurement in myocardial SPECT imaging. The observer chosen for these studies was the scanning linear observer. The tasks for the observer were localization of a signal and estimation of the signal radius. For the localization study, area under the localization receiver operating characteristic curve (A LROC) was computed as AMeasLROC = 0.89332 ± 0.00474 and ANoLROC = 0.89408 ± 0.00475, where "Meas" implies the use of attenuation information from the CT measurement, and "No" indicates the absence of attenuation information. For the estimation study, area under the estimation receiver operating characteristic curve (AEROC) was quantified as AMeasEROC = 0.55926 ± 0.00731 and ANoEROC = 0.56167 ± 0.00731. Based on these results, it was concluded that the use of CT information did not improve the scanning linear observer's ability to perform the stated myocardial SPECT tasks. The risk to the patient of the CT measurement was quantified in terms of excess effective dose as 2.37 mSv for males and 3.38 mSv for females.;Another image quality tool generated within this body of work was a singular value decomposition (SVD) algorithm to reduce the dimension of the eigenvalue problem for tomography systems with rotational symmetry. Agreement in the results of this reduced dimension SVD algorithm and those of a standard SVD algorithm are shown for a toy problem. The use of SVD toward image quality metrics such as the measurement and null space are also presented.
机译:在亚利桑那大学的图像质量实验室中,为计算机处理单元(CPU)和图形处理单元(GPU)开发了用于层析成像系统客观质量评估的计算工具。创建了称为IQCT的快速分析X射线投影代码,以计算锥形束多层螺旋计算机断层扫描(CT)扫描仪的平均投影图像。对IQCT进行了优化,以利用GPU的大规模并行架构。根据先前在图像质量实验室中的研究,编写了用于计算单光子发射计算机断层摄影(SPECT)投影图像的CPU代码。IQCT和SPECT建模代码用于模拟多模式SPECT / CT观察者研究的数据。这些观察者研究的目的是评估在心肌SPECT成像中使用来自CT测量的衰减信息对图像质量的好处。为这些研究选择的观察者是扫描线性观察者。观察者的任务是信号的定位和信号半径的估计。对于定位研究,定位接收器工作特性曲线(A LROC)下的面积计算为AMeasLROC = 0.89332±0.00474和ANoLROC = 0.89408±0.00475,其中“ Meas”表示使用CT测量中的衰减信息,而“ No “”表示没有衰减信息。对于估计研究,将估计接收器工作特性曲线(AEROC)下的面积量化为AMeasEROC = 0.55926±0.00731和ANoEROC = 0.56167±0.00731。根据这些结果,可以得出结论,使用CT信息并不能提高扫描线性观察者执行所述心肌SPECT任务的能力。对患者进行CT测量的风险以有效剂量过量为男性进行量化,男性为2​​.37 mSv,女性为3.38 mSv .;在此工作范围内产生的另一种图像质量工具是奇异值分解(SVD)算法以减少具有旋转对称性的层析成像系统的特征值问题的维数。对于玩具问题,该降维SVD算法的结果与标准SVD算法的结果一致。还介绍了将SVD用于图像质量度量(例如测量和零空间)的方法。

著录项

  • 作者

    Palit, Robin.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Applied Mathematics.;Physics Optics.;Health Sciences Radiology.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 159 p.
  • 总页数 159
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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