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Probing Lung Microstructure with Hyperpolarized Noble Gas Diffusion MRI: Theoretical Models and Experimental Results

机译:超极化惰性气体扩散MRI探测肺的微观结构:理论模型和实验结果

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摘要

The introduction of hyperpolarized gases (3He and 129Xe) has opened the door to applications for which gaseous agents are uniquely suited–lung MRI. One of the pulmonary applications, diffusion MRI, relies on measuring Brownian motion of inhaled hyperpolarized gas atoms diffusing in lung airspaces. In this article we provide an overview of the theoretical ideas behind hyperpolarized gas diffusion MRI and the results obtained over the decade-long research. We describe a simple technique based on measuring gas apparent diffusion coefficient (ADC) and an advanced technique, in vivo lung morphometry, that quantifies lung microstructure both in terms of Weibel parameters (acinar airways radii and alveolar depth) and standard metrics (mean linear intercept, surface-to-volume ratio, and alveolar density) that are widely used by lung researchers but were previously available only from invasive lung biopsy. This technique has the ability to provide unique three-dimensional tomographic information on lung microstructure from a less than 15 s MRI scan with results that are in good agreement with direct histological measurements. These safe and sensitive diffusion measurements improve our understanding of lung structure and functioning in health and disease, providing a platform for monitoring the efficacy of therapeutic interventions in clinical trials.
机译:超极化气体( 3 He和 129 Xe)的引入为气态MRI的独特应用打开了大门。肺部应用之一是扩散MRI,它依赖于测量在肺空域中扩散的吸入的超极化气体原子的布朗运动。在本文中,我们概述了超极化气体扩散MRI背后的理论思想以及长达十年的研究成果。我们描述了一种基于测量气体表观扩散系数(ADC)的简单技术和一种先进的体内肺形态测量技术,该技术可以根据Weibel参数(气道半径和肺泡深度)和标准指标(平均线性截距)来量化肺微结构,表面体积比和肺泡密度),这已被肺部研究人员广泛使用,但以前只能从浸润性肺活检中获得。这项技术能够在不到15 s的MRI扫描中提供有关肺微结构的独特三维断层扫描信息,其结果与直接组织学测量结果非常吻合。这些安全而敏感的扩散测量结果可增进我们对肺结构和健康与疾病功能的了解,为监测临床试验中治疗干预措施的有效性提供平台。

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