Emami Kiarash, Stephen Michael, Kadlecek Stephen, Cadman Robert V, Ishii Masaru, Rizi Rahim R
University of Pennsylvania, Department of Radiology, 1 Silverstein Bldg., 3400 Spruce Street, Philadelphia, PA 19104, USA.
Proc Am Thorac Soc. 2009 Aug 15;6(5):431-8. doi: 10.1513/pats.200902-008AW.
Improvements in the quantitative assessment of structure, function, and metabolic activity in the lung, combined with improvements in the spatial resolution of those assessments, enhance the diagnosis and evaluation of pulmonary disorders. Radiologic methods are among the most attractive techniques for the comprehensive assessment of the lung, as they allow quantitative assessment of this organ through measurements of a number of structural, functional, and metabolic parameters. Hyperpolarized nuclei magnetic resonance imaging (MRI) has opened up new territories for the quantitative assessment of lung function and structure with an unprecedented spatial resolution and sensitivity. This review article presents a survey of recent developments in the field of pulmonary imaging using hyperpolarized nuclei MRI for quantitative imaging of different aspects of the lung, as well as preclinical applications of these techniques to diagnose and evaluate specific pulmonary diseases. After presenting a brief overview of various hyperpolarization techniques, this survey divides the research activities of the field into four broad areas: lung microstructure, ventilation, oxygenation, and perfusion. Finally, it discusses the challenges currently faced by researchers in this field to translate this rich body of methodology into wider-scale clinical applications.
肺部结构、功能和代谢活性定量评估方法的改进,以及这些评估在空间分辨率上的提高,增强了肺部疾病的诊断和评估能力。放射学方法是对肺部进行全面评估最具吸引力的技术之一,因为它们可以通过测量多个结构、功能和代谢参数对该器官进行定量评估。超极化原子核磁共振成像(MRI)以前所未有的空间分辨率和灵敏度,为肺部功能和结构的定量评估开辟了新领域。本文综述了超极化原子核MRI在肺部成像领域的最新进展,用于肺部不同方面的定量成像,以及这些技术在诊断和评估特定肺部疾病方面的临床前应用。在简要概述各种超极化技术之后,本综述将该领域的研究活动分为四个广泛领域:肺微结构、通气、氧合和灌注。最后,讨论了该领域研究人员目前面临的挑战,即将这一丰富的方法体系转化为更广泛的临床应用。