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Early Assessment of Tumor Response to Radiation Therapy Using High-resolution Contrast Enhanced Ultrasound Imaging Techniques and Applications for Prostate Cancer

机译:高分辨率对比增强超声成像技术对肿瘤对放射治疗的反应的早期评估及其在前列腺癌中的应用

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摘要

Traditional anatomical imaging for cancer diagnosis and assessing response to therapy is limited to just the superficial appearance of a tumor. A functional imaging approach, which takes a closer at look various microenvironments within the tumor, is likely to offer a more holistic view of the tumor behavior and response to treatment. Acoustic Angiography is a novel super-harmonic contrast ultrasound imaging technique that utilizes a dual-frequency transducer to quickly generate high-resolution 3D microvascular images with exceptionally high contrast-to-tissue ratio. Herein, we demonstrate the ability of Acoustic Angiography to quantify tumor microvascular features and investigate their changes after therapeutic doses of radiation therapy in a tumor bearing rodent model. We then demonstrate using functional longitudinal data analysis that quantified microvascular features can be used to predict radiation therapy response with limited time point measurements.;Prostate cancer is the most common cancer in men, resulting in near 30,000 deaths a year in the United States alone. Current diagnostic and staging techniques for prostate cancer have been shown to have low sensitivity and specificity, limiting early detection and intervention. There is potential for improving ultrasound imaging techniques for aiding in prostate cancer detection and biopsy guidance with Acoustic Angiography imaging. The clinical translation of Acoustic Angiography hinges on certain design improvements, primarily increased depth of penetration. The last part of this dissertation discusses the development of a dual-frequency linear array transducer for Acoustic Angiography.;This dissertation consists of two primary hypotheses: 1) Acoustic Angiography can be used to quantify changes in tumor microvascular features and predict radiation treatment response earlier than using tumor volume alone. 2) Acoustic Angiography using a dual-frequency linear array transducer is suitable for prostate cancer imaging.
机译:用于癌症诊断和评估对治疗反应的传统解剖成像仅限于肿瘤的表面外观。仔细观察肿瘤内各种微环境的功能性成像方法可能会提供有关肿瘤行为和对治疗反应的更全面的了解。声学血管造影是一种新颖的超谐波对比超声成像技术,该技术利用双频换能器快速生成具有异常高的对比组织比的高分辨率3D微血管图像。在这里,我们证明了声学血管造影量化肿瘤微血管特征的能力,并研究了在具有肿瘤的啮齿动物模型中放射治疗剂量后的变化。然后,我们使用功能性纵向数据分析证明,可以在有限的时间点测量中使用量化的微血管特征来预测放射治疗的反应。前列腺癌是男性中最常见的癌症,仅在美国每年就导致30,000例死亡。现有的前列腺癌诊断和分期技术已显示出较低的敏感性和特异性,限制了早期发现和干预。有可能改进超声成像技术,以帮助通过声血管造影成像进行前列腺癌检测和活检指导。声学血管造影的临床翻译取决于某些设计的改进,主要是增加穿透深度。本论文的最后一部分讨论了用于声血管造影的双频线性阵列换能器的开发。论文包括两个主要假设:1)声血管造影可用于量化肿瘤微血管特征的变化并更早地预测放射治疗反应而不是单独使用肿瘤体积。 2)使用双频线性阵列换能器的声学血管造影适用于前列腺癌成像。

著录项

  • 作者

    Kasoji, Sandeep K.;

  • 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 Medical imaging.;Biomedical engineering.;Oncology.
  • 学位 Ph.D.
  • 年度 2018
  • 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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