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Design of a magnetic field compatible, high-performance optical breast imaging system for MRI-guided optical spectroscopy.

机译:用于MRI引导光谱的磁场兼容,高性能光学乳房成像系统的设计。

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摘要

Multimodality imaging is becoming the standard of care for research and clinical studies. Such an approach is able to provide complementary information which can detect and characterize tumors. Advancing instrumentation for diffuse near-infrared spectroscopy (NIRS) within a conventional magnetic resonance imaging (MRI) scanner requires careful choices to make a true hybrid imaging system. In this thesis, a series of system technology development studies were completed in order to analyze what was needed to prototype the next phase of this technology with detection being possible within the MRI. Initially in a breast imaging system, a set of parallel plates was used with a newly created frequency-domain and continuous wave source-detector array. The opto-electronic sub-system was created and deployed within a previously existing MRI-coupled spectroscopy approach, principally allowing incorporation of additional NIR wavelengths beyond 850nm, with interlaced channels of photomultiplier tubes and silicon photodiodes. This new sub-system improved the data quality and accuracy in recovery of all breast optical properties.;While the current system is highly functional, and was deployed in a large clinical trial of over 60 subjects, the usability was found to be limited due to the cumbersome nature of the fiber-breast geometry and adaptability of the system. Furthermore, there is a severe penalty for the lack of full breast coverage as the sensitivity of DOT to tumors drops. Full coverage of the breast was found to be a critical. Adding more fibers for full breast coverage is impractical due to the size of the fibers as well as the significant cost that would be incurred. In order to solve this challenge, we have built a system which places detectors in direct contact with the patient's tissue, thus, forgoing the long fiber optic cables used with the hybrid system and improving light throughput.;The new modular design, which allows up to 64 detectors to be used, places the detectors' frontend electronics outside the MRI room without sacrificing the detectors sensitivity or dynamic range. Characterization and calibration of the system is described in detail.
机译:多模态成像正成为研究和临床研究的护理标准。这种方法能够提供可以检测和表征肿瘤的补充信息。常规磁共振成像(MRI)扫描仪中用于扩散近红外光谱(NIRS)的先进仪器需要做出认真的选择,以制作出真正的混合成像系统。在本文中,完成了一系列系统技术开发研究,目的是分析在MRI中可能进行检测的情况下,对该技术下一阶段进行原型开发所需的内容。最初在乳房成像系统中,一组平行板与新创建的频域和连续波源-探测器阵列配合使用。光电子系统是在以前存在的MRI耦合光谱方法中创建和部署的,主要是允许将超过850nm的其他NIR波长与光电倍增管和硅光电二极管的隔行扫描通道合并。这个新的子系统提高了恢复所有乳房光学特性的数据质量和准确性。虽然当前系统功能强大,并且已在60多个受试者的大型临床试验中进行了部署,但是由于以下原因,其可用性受到限制纤维-乳房几何形状的繁琐本质和系统的适应性。此外,由于DOT对肿瘤的敏感性下降,因此缺乏充分的乳房覆盖会受到严厉的惩罚。发现乳房的完全覆盖是至关重要的。由于纤维的尺寸以及可能产生的巨大成本,添加更多的纤维以完全覆盖乳房是不切实际的。为了解决这一挑战,我们构建了一个系统,使检测器直接与患者组织接触,从而避免了与混合系统一起使用的长光纤电缆,并提高了光通量。在要使用的64个检测器上,将检测器的前端电子设备放置在MRI室之外,而不会牺牲检测器的灵敏度或动态范围。详细描述了系统的特性和校准。

著录项

  • 作者

    El-Ghussein, Fadi.;

  • 作者单位

    Dartmouth College.;

  • 授予单位 Dartmouth College.;
  • 学科 Medical imaging.;Biomedical engineering.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 281 p.
  • 总页数 281
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:53:31

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