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A stationary digital breast tomosynthesis system: Design simulation, characterization and image reconstruction.

机译:固定式数字乳房断层合成系统:设计仿真,表征和图像重建。

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摘要

Conventional screen-film and/or digital mammography, despite being the most popular breast imaging modalities, suffer from certain limitations, most important of which is tissue overlap and false diagnoses arising thereof. A new three-dimensional alternative for breast cancer screening and diagnosis is tomosynthesis in which a limited number of low-dose two-dimensional projection images of a patient are used to reconstruct the three-dimensional tissue information. The tomosynthesis systems currently under development all incorporate an x-ray source that moves over a certain angle to acquire images. This tube motion is a major limitation because it degrades image quality, increases the scan time and causes prolonged patient discomfort. The availability of independently controllable carbon nanotube cathodes enabled us to explore the possibility of setting up a stationary multi-beam imaging system. In this dissertation we have proposed a stationary digital breast tomosynthesis scanner using spatially distributed carbon nanotube based field emission x-ray sources. We have presented details about the design, set-up, characterization and image reconstruction of the completely stationary digital breast tomosynthesis system. This system has the potential to reduce the total scan time and improve the image quality in breast imaging.;Extensive design simulation results have been used to decide on the final system set-up. The fully assembled actual experimental system is capable of acquiring all the images in as little as eight seconds and yield superior image quality as well. The system has been completely characterized in terms of focal spot size, system resolution and geometric calibration. Certain important results have been obtained during the process that we hope will set the standard for the characterization of the future systems. A novel iterative reconstruction algorithm has been tried on the projection images obtained from the tomosynthesis system. Our algorithm has demonstrated image quality that is on par with the other tomosynthesis systems under development.
机译:尽管是最流行的乳房成像方式,但是常规的屏幕胶片和/或数字乳腺X线摄影术仍具有一定的局限性,其中最重要的是组织重叠和由此引起的错误诊断。断层合成是乳腺癌筛查和诊断的一种新的三维替代方法,其中有限数量的患者低剂量二维投影图像用于重建三维组织信息。当前正在开发的断层合成系统都结合了X射线源,该X射线源以一定角度移动以获取图像。这种管运动是一个主要限制,因为它会降低图像质量,增加扫描时间并导致患者长期不适。可独立控制的碳纳米管阴极的可用性使我们能够探索建立固定的多束成像系统的可能性。本文提出了一种基于空间分布的碳纳米管场发射x射线源的固定式数字乳腺断层扫描仪。我们已经介绍了有关完全固定式数字乳房断层合成系统的设计,设置,表征和图像重建的详细信息。该系统有可能减少总扫描时间并改善乳腺成像的图像质量。;广泛的设计仿真结果已用于决定最终的系统设置。完全组装的实际实验系统能够在短短八秒内获取所有图像,并且还可以产生出色的图像质量。该系统已在焦斑大小,系统分辨率和几何校准方面得到了全面表征。在此过程中已经获得了某些重要的结果,我们希望将为未来系统的特性设定标准。已经对从断层合成系统获得的投影图像尝试了一种新颖的迭代重建算法。我们的算法已经证明了与正在开发的其他断层合成系统相当的图像质量。

著录项

  • 作者

    Rajaram, Ramya.;

  • 作者单位

    The University of North Carolina at Chapel Hill.;

  • 授予单位 The University of North Carolina at Chapel Hill.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 148 p.
  • 总页数 148
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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