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Optimizing Cone Beam Computed Tomography (CBCT) System for Image Guided Radiation Therapy.

机译:优化用于图像引导放射治疗的锥形束计算机断层扫描(CBCT)系统。

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摘要

Cone Beam Computed Tomography (CBCT) system is the most widely used imaging device in image guided radiation therapy (IGRT), where set of 3D volumetric image of patient can be reconstructed to identify and correct position setup errors prior to the radiation treatment. This CBCT system can significantly improve precision of on-line setup errors of patient position and tumor target localization prior to the treatment. However, there are still a number of issues that needs to be investigated with CBCT system such as 1) progressively increasing defective pixels in imaging detectors by its frequent usage, 2) hazardous radiation exposure to patients during the CBCT imaging, 3) degradation of image quality due to patients' respiratory motion when CBCT is acquired and 4) unknown knowledge of certain anatomical features such as liver, due to lack of soft-tissue contrast which makes tumor motion verification challenging. In this dissertation, we explore on optimizing the use of cone beam computed tomography (CBCT) system under such circumstances.;We begin by introducing general concept of IGRT. We then present the development of automated defective pixel detection algorithm for X-ray imagers that is used for CBCT imaging using wavelet analysis. We next investigate on developing fast and efficient low-dose volumetric reconstruction techniques which includes 1) fast digital tomosynthesis reconstruction using general-purpose graphics processing unit (GPGPU) programming and 2) fast low-dose CBCT image reconstruction based on the Gradient-Projection-Barzilai-Borwein formulation (GP-BB). We further developed two efficient approaches that could reduce the degradation of CBCT images from respiratory motion. First, we propose reconstructing four dimensional (4D) CBCT and DTS using respiratory signal extracted from fiducial markers implanted in liver. Second, novel motion-map constrained image reconstruction (MCIR) is proposed that allows reconstruction of high quality and high phase resolution 4DCBCT images with no more than the imaging dose used in a standard Free Breathing 3DCBCT (FB-3DCBCT) scan. Finally, we demonstrate a method to analyze motion characteristics of liver that are particularly important for image guided stereotactic body radiation therapy (IG-SBRT). It is anticipated that all the approaches proposed in this study, which are both technically and clinically feasible, will allow much improvement in IGRT process.
机译:锥束计算机断层扫描(CBCT)系统是图像引导放射治疗(IGRT)中使用最广泛的成像设备,可以重建患者的3D体积图像集,以在放射治疗之前识别和纠正位置设置错误。该CBCT系统可以显着提高治疗前患者位置和肿瘤靶标定位的在线设置错误的精度。但是,CBCT系统仍然需要研究许多问题,例如:1)通过频繁使用,逐渐增加成像检测器中的缺陷像素; 2)CBCT成像期间对患者的有害辐射暴露; 3)图像退化由于获得CBCT时患者的呼吸运动而导致的高质量,以及4)由于缺乏软组织对比而使某些解剖学特征(例如肝脏)的知识未知,这使得肿瘤运动验证具有挑战性。本文探讨了在这种情况下锥束计算机断层扫描(CBCT)系统的优化使用。我们首先介绍了IGRT的一般概念。然后,我们介绍了用于X射线成像仪的自动缺陷像素检测算法的开发,该算法用于使用小波分析的CBCT成像。接下来,我们将研究开发快速有效的低剂量体积重建技术,包括1)使用通用图形处理单元(GPGPU)编程进行快速数字断层合成重建,以及2)基于梯度投影-的快速低剂量CBCT图像重建Barzilai-Borwein配方(GP-BB)。我们进一步开发了两种有效的方法,可以减少呼吸运动引起的CBCT图像退化。首先,我们建议使用从植入肝脏的基准标记中提取的呼吸信号重建四维(4D)CBCT和DTS。第二,提出了新颖的运动图约束图像重建(MCIR),该重建允许以不超过标准“自由呼吸3DCBCT”(FB-3DCBCT)扫描中使用的成像剂量重建高质量和高相位分辨率的4DCBCT图像。最后,我们展示了一种分析肝脏运动特性的方法,该方法对于图像引导立体定向放射治疗(IG-SBRT)尤其重要。可以预期,本研究中提出的所有方法,无论在技术上还是在临床上都是可行的,将大大改善IGRT的过程。

著录项

  • 作者

    Park, Chun Joo.;

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Engineering Electronics and Electrical.;Physics Radiation.;Health Sciences Radiology.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 181 p.
  • 总页数 181
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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