McGovern Toby K, Robichaud Annette, Fereydoonzad Liah, Schuessler Thomas F, Martin James G
Meakins-Christie Laboratories, Department of Medicine, McGill University.
J Vis Exp. 2013 May 15(75):e50172. doi: 10.3791/50172.
The forced oscillation technique (FOT) is a powerful, integrative and translational tool permitting the experimental assessment of lung function in mice in a comprehensive, detailed, precise and reproducible manner. It provides measurements of respiratory system mechanics through the analysis of pressure and volume signals acquired in reaction to predefined, small amplitude, oscillatory airflow waveforms, which are typically applied at the subject's airway opening. The present protocol details the steps required to adequately execute forced oscillation measurements in mice using a computer-controlled piston ventilator (flexiVent; SCIREQ Inc, Montreal, Qc, Canada). The description is divided into four parts: preparatory steps, mechanical ventilation, lung function measurements, and data analysis. It also includes details of how to assess airway responsiveness to inhaled methacholine in anesthetized mice, a common application of this technique which also extends to other outcomes and various lung pathologies. Measurements obtained in naïve mice as well as from an oxidative-stress driven model of airway damage are presented to illustrate how this tool can contribute to a better characterization and understanding of studied physiological changes or disease models as well as to applications in new research areas.
强迫振荡技术(FOT)是一种强大、综合且具有转化性的工具,能够以全面、详细、精确且可重复的方式对小鼠的肺功能进行实验评估。它通过分析在对预定义的小幅度振荡气流波形做出反应时采集的压力和容积信号,来测量呼吸系统力学,这些振荡气流波形通常施加于受试者的气道开口处。本方案详细介绍了使用计算机控制的活塞式呼吸机(flexiVent;SCIREQ公司,加拿大魁北克省蒙特利尔市)在小鼠中充分执行强迫振荡测量所需的步骤。描述分为四个部分:准备步骤、机械通气、肺功能测量和数据分析。它还包括如何评估麻醉小鼠对吸入乙酰甲胆碱的气道反应性的详细信息,这是该技术的一种常见应用,也可扩展到其他结果和各种肺部疾病。展示了在未处理小鼠以及气道损伤的氧化应激驱动模型中获得的测量结果,以说明该工具如何有助于更好地表征和理解所研究的生理变化或疾病模型,以及在新研究领域中的应用。