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Noncontact diffuse correlation tomography of breast tumor.

机译:乳腺肿瘤的非接触式弥散相关层析成像。

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摘要

Since aggressive cancers are frequently hypermetabolic with angiogenic vessels, quantification of blood flow (BF) can be vital for cancer diagnosis. Our laboratory has developed a noncontact diffuse correlation tomography (ncDCT) system for 3-D imaging of BF distribution in deep tissues (up to centimeters). The ncDCT system employs two sets of optical lenses to project source and detector fibers respectively onto the tissue surface, and applies finite element framework to model light transportation in complex tissue geometries. This thesis reports our first step to adapt the ncDCT system for 3-D imaging of BF contrasts in human breast tumors. A commercial 3-D camera was used to obtain breast surface geometry which was then converted to a solid volume mesh. An ncDCT probe scanned over a region of interest on the breast mesh surface and the measured boundary data were used for 3-D image reconstruction of BF distribution. This technique was tested with computer simulations and in 28 patients with breast tumors. Results from computer simulations suggest that relatively high accuracy can be achieved when the entire tumor was within the sensitive region of diffuse light. Image reconstruction with a priori knowledge of the tumor volume and location can significantly improve the accuracy in recovery of tumor BF contrasts. In vivo ncDCT imaging results from the majority of breast tumors showed higher BF contrasts in the tumor regions compared to the surrounding tissues. Reconstructed tumor depths and dimensions matched ultrasound imaging results when the tumors were within the sensitive region of light propagation. The results demonstrate that ncDCT system has the potential to image BF distributions in soft and vulnerable tissues without distorting tissue hemodynamics. In addition to this primary study, detector fibers with different modes (i.e., single-mode, few-mode, multimode) for photon collection were experimentally explored to improve the signal-to-noise ratio of diffuse correlation spectroscopy flowoximeter measurements.
机译:由于侵袭性癌症通常具有血管生成性血管代谢亢进,因此血流(BF)的定量对于癌症诊断至关重要。我们的实验室开发了一种非接触式弥散相关断层扫描(ncDCT)系统,用于3D成像深层组织中的高炉分布(最大厘米)。 ncDCT系统采用两组光学透镜分别将源纤维和检测器纤维投射到组织表面上,并应用有限元框架来模拟复杂组织几何结构中的光传输。本论文报告了我们的第一步,即将ncDCT系统用于人乳腺肿瘤高炉造影剂的3D成像。使用商用3D相机获取乳房表面的几何形状,然后将其转换为固体体积的网格。在乳房网格表面上的感兴趣区域上扫描的ncDCT探针和测得的边界数据用于BF分布的3D图像重建。该技术已通过计算机模拟测试,并在28例乳腺肿瘤患者中进行了测试。计算机模拟的结果表明,当整个肿瘤都位于散射光的敏感区域内时,可以实现相对较高的准确性。具有肿瘤体积和位置的先验知识的图像重建可以显着提高恢复肿瘤BF对比的准确性。大多数乳腺肿瘤的体内ncDCT成像结果显示,与周围组织相比,肿瘤区域的BF对比度更高。当肿瘤在光传播的敏感区域内时,重建的肿瘤深度和尺寸与超声成像结果相匹配。结果表明,ncDCT系统具有对软组织和脆弱组织中的BF分布进行成像的潜力,而不会破坏组织的血液动力学。除了这项主要研究之外,还实验性地探索了用于光子收集的具有不同模式(即单模,少模,多模)的检测器光纤,以改善漫射相关光谱流式血氧仪测量的信噪比。

著录项

  • 作者

    He, Lian.;

  • 作者单位

    University of Kentucky.;

  • 授予单位 University of Kentucky.;
  • 学科 Biomedical engineering.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 144 p.
  • 总页数 144
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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