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PET Quantification for Assessing Tumour Response.

机译:用于评估肿瘤反应的PET定量。

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摘要

Treatment response assessment in advanced head and neck cancer patients using Positron Emission Tomography (PET) has potential to provide significant clinical benefit. PET quantification methods can be either static or dynamic. The static approach is simple and is widely used. The simplified dynamic PET quantification method is a promising approach as it provides a reasonable trade-off between accuracy and clinical practicality. This method requires a blood sample which makes it not ideal since the PET quantification accuracy may be compromised due to small activity and volume of the blood sample. The implementation of image-based simplified dynamic PET quantification in head and neck cancer patients requires partial volume correction due to small vessel sizes and limited PET spatial resolution. The objective of this thesis is to evaluate the accuracy of current PET quantification methods for response assessment in advanced head and neck cancer patients and to develop a novel and robust partial volume correction technique to improve PET quantification.;First, the static PET quantification method using fixed size ROI is evaluated. Significant variation in response assessment was observed suggesting that static PET quantification using a fixed-size ROI should be approached with caution in heterogeneous tumours.;Second, the accuracy of blood activity measurements and its effect on the accuracy of quantitative response assessment is evaluated. Significant inaccuracies in the blood sample based simplified dynamic PET quantification method are identified. The results support a need to develop an image-based simplified dynamic PET quantification method with partial volume correction.;Finally, a novel partial volume correction technique was developed, validated, and its robustness was investigated. In comparison to previously published partial volume correction techniques, it performed better with noisy PET images and it was more robust for errors in PET-CT registration. The partial volume correction technique was also implemented and validated in sinogram space to provide additional advantages such as applicability to iterative reconstructions. The proposed partial volume correction technique enables the use of image-based simplified dynamic PET quantification in advanced head and neck cancer patients. Furthermore, the technique establishes a framework for future research to address the inherent low spatial resolution of PET.
机译:使用正电子发射断层扫描(PET)对晚期头颈癌患者的治疗反应评估可能具有显着的临床益处。 PET定量方法可以是静态的也可以是动态的。静态方法很简单并且被广泛使用。简化的动态PET定量方法是一种有前途的方法,因为它在准确性和临床实用性之间提供了合理的权衡。此方法需要的血液样本不理想,因为由于血液样本的活性和体积小,PET定量精度可能会受到影响。由于小血管尺寸和有限的PET空间分辨率,在头颈癌患者中实施基于图像的简化动态PET量化需要部分体积校正。本文的目的是评估目前用于晚期头颈癌患者反应评估的PET定量方法的准确性,并开发出一种新颖而强大的部分体积校正技术来改善PET定量。评估固定大小的ROI。观察到反应评估的显着差异,表明在异质性肿瘤中应谨慎使用固定大小的ROI进行静态PET定量。第二,评估血液活度测量的准确性及其对定量反应评估准确性的影响。在基于血液样品的简化动态PET定量方法中发现了重大不准确之处。结果支持开发一种基于图像的具有部分体积校正的简化动态PET定量方法的需求。最后,开发,验证了一种新颖的部分体积校正技术,并研究了其稳健性。与以前发布的部分体积校正技术相比,它在嘈杂的PET图像上表现更好,并且对于PET-CT配准中的错误更稳定。部分体积校正技术也在正弦图空间中得到实施和验证,以提供其他优势,例如适用于迭代重建。所提出的部分体积校正技术可以在晚期头颈癌患者中使用基于图像的简化动态PET定量分析。此外,该技术为将来的研究建立了框架,以解决PET固有的低空间分辨率。

著录项

  • 作者

    Sattarivand, Mike.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Biophysics.;Medical imaging.;Oncology.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 177 p.
  • 总页数 177
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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