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Investigation of Lung Structure-Function Relationships Using Hyperpolarized Noble Gases.

机译:使用超极化稀有气体研究肺的结构-功能关系。

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摘要

Magnetic Resonance Imaging (MRI) is an application of the nuclear magnetic resonance (NMR) phenomenon to non-invasively generate 3D tomographic images. MRI is an emerging modality for the lung, but it suffers from low sensitivity due to inherent low tissue density and short T(*/2) . Hyperpolarization is a process by which the nuclear contribution to NMR signal is greatly enhanced to more than 100,000 times that of samples in thermal equilibrium. The noble gases 3He and 129Xe are most often hyperpolarized by transfer of light angular momentum through the electron of a vaporized alkali metal to the noble gas nucleus (called Spin Exchange Optical Pumping). The enhancement in NMR signal is so great that the gas itself can be imaged via MRI, and because noble gases are chemically inert, they can be safely inhaled by a subject, and the gas distribution within the interior of the lung can be imaged.;The mechanics of respiration is an elegant physical process by which air is is brought into the distal airspaces of the lungs for oxygen/carbon dioxide gas exchange with blood. Therefore proper description of lung function is intricately related to its physical structure , and the basic mechanical operation of healthy lungs -- from pressure driven airflow, to alveolar airspace gas kinetics, to gas exchange by blood/gas concentration gradients, to elastic contraction of parenchymal tissue -- is a process decidedly governed by the laws of physics.;This dissertation will describe experiments investigating the relationship of lung structure and function using hyperpolarized (HP) noble gas MRI. In particular HP gases will be applied to the study of several pulmonary diseases each of which demonstrates unique structure-function abnormalities: asthma, cystic fibrosis, and chronic obstructive pulmonary disease. Successful implementation of an HP gas acquisition protocol for pulmonary studies is an involved and stratified undertaking which requires a solid theoretical foundation in NMR and hyperpolarization theory, construction of dedicated hardware, development of dedicated software, and appropriate image analysis techniques for all acquired data. The author has been actively involved in each of these and has dedicated specific chapters of this dissertation to their description.;First, a brief description of lung structure-function investigations and pulmonary imaging will be given (chapter 1). Brief discussions of basic NMR, MRI, and hyperpolarization theory will be given (chapters 2 and 3) followed by their particular methods of implementation in this work (chapters 4 and 5). Analysis of acquired HP gas images will be discussed (chapter 6), and the investigational procedures and results for each lung disease examined will be detailed (chapter 7). Finally, a quick digression on the strengths and limitations of HP gas MRI will be provided (chapter 8).
机译:磁共振成像(MRI)是核磁共振(NMR)现象在非侵入式生成3D断层图像中的一种应用。 MRI是一种针对肺部的新兴疗法,但是由于固有的低组织密度和较短的T(* / 2),因此MRI的敏感性较低。超极化是一个过程,通过该过程,核对NMR信号的贡献大大增强,达到了热平衡样品的100,000倍。稀有气体3He和129Xe通常是通过将光角动量通过汽化的碱金属的电子转移到稀有气体核而超极化的(称为自旋交换光学泵浦)。 NMR信号增强得非常厉害,可以通过MRI对气体本身进行成像,并且由于稀有气体是化学惰性的,因此可以被受试者安全吸入,并且可以对肺内部的气体分布进行成像。呼吸机制是一个优雅的物理过程,通过该过程,空气被带入肺的远端空间,以便与血液交换氧气/二氧化碳气体。因此,对肺功能的正确描述与其物理结构和健康肺的基本机械操作紧密相关,从压力驱动的气流到肺泡空域气体动力学,再到通过血液/气体浓度梯度进行的气体交换,再到实质的弹性收缩。组织-是一个由物理定律决定的过程。本论文将描述使用超极化(HP)稀有气体MRI研究肺结构与功能之间关系的实验。特别是,HP气体将用于几种肺部疾病的研究,每种疾病都表现出独特的结构功能异常:哮喘,囊性纤维化和慢性阻塞性肺部疾病。成功实施用于肺部研究的HP气体采集协议是一项艰巨的任务,需要在NMR和超极化理论,扎实的硬件结构,专用软件的开发以及适用于所有采集数据的适当图像分析技术方面扎实的理论基础。作者一直积极参与其中的每一项工作,并在其论文的专门章节中对其进行了详细描述。首先,将简要介绍肺结构功能检查和肺部成像(第1章)。将简要介绍基本的NMR,MRI和超极化理论(第2章和第3章),然后介绍其在本工作中的特殊实现方法(第4章和第5章)。将讨论获取的HP气体图像的分析(第6章),并将详细介绍每种检查的肺部疾病的研究程序和结果(第7章)。最后,将提供有关HP气体MRI的优势和局限性的快速论述(第8章)。

著录项

  • 作者

    Thomen, Robert P.;

  • 作者单位

    Washington University in St. Louis.;

  • 授予单位 Washington University in St. Louis.;
  • 学科 Medical imaging.;Physics.;Medicine.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 218 p.
  • 总页数 218
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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