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临床前研究中的肺功能测量:已取得的成果及未来发展方向?

Lung function measurements in preclinical research: What has been done and where is it headed?

作者信息

Ahookhosh Kaveh, Vanoirbeek Jeroen, Vande Velde Greetje

机构信息

Biomedical MRI, Department of Imaging and Pathology, KU Leuven, Leuven, Belgium.

Centre of Environment and Health, Department of Public Health and Primary Care, KU Leuven, Leuven, Belgium.

出版信息

Front Physiol. 2023 Mar 22;14:1130096. doi: 10.3389/fphys.2023.1130096. eCollection 2023.

Abstract

Due to the close interaction of lung morphology and functions, repeatable measurements of pulmonary function during longitudinal studies on lung pathophysiology and treatment efficacy have been a great area of interest for lung researchers. Spirometry, as a simple and quick procedure that depends on the maximal inspiration of the patient, is the most common lung function test in clinics that measures lung volumes against time. Similarly, in the preclinical area, plethysmography techniques offer lung functional parameters related to lung volumes. In the past few decades, many innovative techniques have been introduced for lung function measurements, while each one of these techniques has their own advantages and disadvantages. Before each experiment, depending on the sensitivity of the required pulmonary functional parameters, it should be decided whether an invasive or non-invasive approach is desired. On one hand, invasive techniques offer sensitive and specific readouts related to lung mechanics in anesthetized and tracheotomized animals at endpoints. On the other hand, non-invasive techniques allow repeatable lung function measurements in conscious, free-breathing animals with readouts related to the lung volumes. The biggest disadvantage of these standard techniques for lung function measurements is considering the lung as a single unit and providing only global readouts. However, recent advances in lung imaging modalities such as x-ray computed tomography and magnetic resonance imaging opened new doors toward obtaining both anatomical and functional information from the same scan session, without the requirement for any extra pulmonary functional measurements, in more regional and non-invasive manners. Consequently, a new field of study called pulmonary functional imaging was born which focuses on introducing new techniques for regional quantification of lung function non-invasively using imaging-based techniques. This narrative review provides first an overview of both invasive and non-invasive conventional methods for lung function measurements, mostly focused on small animals for preclinical research, including discussions about their advantages and disadvantages. Then, we focus on those newly developed, non-invasive, imaging-based techniques that can provide either global or regional lung functional readouts at multiple time-points.

摘要

由于肺形态与功能之间存在密切相互作用,在肺部病理生理学和治疗效果的纵向研究中,对肺功能进行可重复测量一直是肺部研究人员非常感兴趣的领域。肺活量测定法是一种简单快速的程序,依赖于患者的最大吸气量,是临床上最常用的肺功能测试方法,它可测量肺容积随时间的变化。同样,在临床前领域,体积描记技术可提供与肺容积相关的肺功能参数。在过去几十年中,已经引入了许多用于肺功能测量的创新技术,而这些技术中的每一种都有其自身的优缺点。在每次实验之前,应根据所需肺功能参数的敏感性,决定是采用侵入性方法还是非侵入性方法。一方面,侵入性技术可在实验终点时为麻醉和气管切开的动物提供与肺力学相关的敏感且特异的读数。另一方面,非侵入性技术可在清醒、自由呼吸的动物中进行可重复的肺功能测量,并提供与肺容积相关的读数。这些标准肺功能测量技术的最大缺点是将肺视为一个单一单元,仅提供整体读数。然而,诸如X射线计算机断层扫描和磁共振成像等肺部成像模式的最新进展,为以更局部和非侵入性的方式在同一扫描过程中获取解剖学和功能信息打开了新的大门,而无需进行任何额外的肺功能测量。因此,一个名为肺功能成像的新研究领域应运而生,该领域专注于引入基于成像技术的新技术,以非侵入性方式对肺功能进行局部定量分析。本叙述性综述首先概述了用于肺功能测量的侵入性和非侵入性传统方法,主要侧重于用于临床前研究的小动物,包括对其优缺点的讨论。然后,我们将重点介绍那些新开发的、基于成像的非侵入性技术,这些技术可在多个时间点提供整体或局部的肺功能读数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/20a7/10073442/6c602f449486/fphys-14-1130096-g001.jpg

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