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Optical modeling, design optimization, and performance analysis of a gamma camera for detection of breast cancer.

机译:用于检测乳腺癌的伽玛相机的光学建模,设计优化和性能分析。

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摘要

This dissertation presents the research performed to develop an optical model, improve some design parameters, and analyze the performance of the UA modular gamma camera. Initially we provide a brief background on nuclear medical imaging with scintillation cameras. The key hardware components of a camera are introduced, and some of the fundamental physics involved in the detection of gamma rays is explained. Then we describe a stand-alone modular camera imaging system that was developed to image human breasts in the clinic. The hardware and software components, calibration procedure, and general operation of the system are detailed. We explain the concepts of position estimation and scatter rejection and note how they have been applied to imaging with the UA modular gamma camera. Position estimation uses the output signals of the camera to determine where an incident gamma ray interacted within the camera, and scatter rejection uses the signals to decide whether or not an incident gamma ray underwent scattering prior to being detected by the camera. Then we present an analytical optical model of the UA modular gamma camera. Taking into account physical and optical properties of the camera components, the model performs radiometric calculations to estimate the mean response of the camera to a scintillation event anywhere within the scintillation crystal. The results of several studies using the optical model to test and improve some camera design parameters are reported. Finally, we demonstrate how straightforward signal detection theory can be used to evaluate the performance of a modular gamma camera for the task of detecting signals in noisy backgrounds. Guided by the preliminary design of a dedicated breast imaging system, estimates of how well the UA modular gamma camera can detect lesions within human breasts were generated.
机译:本文介绍了开发光学模型,改进一些设计参数以及分析UA模块化伽马相机性能的研究。最初,我们提供有关使用闪烁照相机进行核医学成像的简要背景。介绍了相机的关键硬件组件,并介绍了伽玛射线检测中涉及的一些基本物理原理。然后,我们描述了一个独立的模块化相机成像系统,该系统被开发用于在诊所成像人体乳房。详细介绍了系统的硬件和软件组件,校准过程以及常规操作。我们将解释位置估计和散射抑制的概念,并说明如何将其应用于UA模块化伽马相机成像。位置估计使用照相机的输出信号来确定入射伽马射线在照相机中的相互作用位置,而散射抑制使用信号来确定入射的伽马射线在被照相机检测之前是否经历了散射。然后,我们介绍了UA模块化伽马相机的解析光学模型。考虑到摄像头组件的物理和光学特性,该模型执行辐射度计算,以估计摄像头对闪烁晶体内任何地方的闪烁事件的平均响应。报告了使用光学模型测试和改善某些相机设计参数的多项研究结果。最后,我们演示了如何使用简单明了的信号检测理论来评估模块化伽马相机的性能,以用于在嘈杂的背景中检测信号。在专用乳房成像系统的初步设计的指导下,得出了UA模块化伽马相机可以检测人的乳房内病变程度的估计值。

著录项

  • 作者

    Sain, John David.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Physics Optics.; Health Sciences Radiology.; Engineering Biomedical.; Health Sciences Oncology.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 367 p.
  • 总页数 367
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;预防医学、卫生学;生物医学工程;肿瘤学;
  • 关键词

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