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Automated full-range pressure-volume curves in mice and rats

机译:小鼠和大鼠的自动全量程压力-体积曲线

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摘要

Pressure-volume (PV) curves constructed over the entire lung volume range can reliably detect functional changes in mouse models of lung diseases. In the present study, we constructed full-range PV curves in healthy and elastase-treated mice using either a classic manually operated technique or an automated approach using a computer-controlled piston ventilator [flexiVent FX; Scientific Respiratory Equipment (SCIREQ), Montreal, Quebec, Canada]. On the day of the experiment, subjects were anesthetized, tracheotomized, and mechanically ventilated. Following an initial respiratory mechanics scan and degassing of the lungs with 100% O2, full-range PV curves were constructed using either the classic or the automated technique. In control mice, superimposable curves were obtained, and statistical equivalence was attained between the two methodologies. In the elastase-treated ones, where significant changes in respiratory mechanics and lung volumes were expected, very small differences were observed between the two techniques, and the criteria for statistical equivalence were met in two out of four parameters assessed. The automated technique was adapted to rats and used to estimate the functional residual capacity (FRC) by volume subtraction. This novel approach generated FRC estimates consistent with the literature, with added accuracy relative to the existing method in diseased subjects. In conclusion, the automated technique generated full-range PV curves that were equivalent or very close to those obtained with the classic method under physiological or severe pathological conditions. The automation facilitated some technical aspects of the procedure, eased its use across species, and helped derive a more accurate estimate of FRC in preclinical models of respiratory disease.>NEW & NOTEWORTHY Partial and full-range pressure-volume (PV) curves are frequently used to characterize lung disease models. Whereas automated techniques exist to construct partial PV curves, a manually operated approach is classically employed to build the full-range ones. In this study, the full-range PV curve technique was automated using a computer-controlled piston ventilator. The automation simplified the technique, facilitated its extension to other species, and inspired a novel way of estimating the functional residual capacity in laboratory rodents.
机译:在整个肺部容积范围内构建的压力-容积(PV)曲线可以可靠地检测小鼠肺部疾病模型中的功能变化。在本研究中,我们使用经典的手动操作技术或使用计算机控制的活塞呼吸机[flexiVent FX;科学呼吸设备(SCIREQ),加拿大魁北克蒙特利尔]。在实验当天,对受试者进行麻醉,气管切开和机械通气。在进行初步的呼吸力学扫描并用100%O2对肺除气后,使用经典技术或自动化技术构建了全范围PV曲线。在对照小鼠中,获得了叠加曲线,并且在两种方法之间获得了统计等效性。在用弹性蛋白酶处理的方法中,预计呼吸力学和肺活量会发生显着变化,两种技术之间观察到的差异很小,并且在评估的四个参数中,有两个参数满足统计等效标准。自动化技术适用于大鼠,并用于通过体积减法估算功能残余容量(FRC)。这种新颖的方法产生的FRC估计与文献一致,相对于患病受试者的现有方法而言,其准确性更高。总之,自动化技术产生的全范围PV曲线与生理或严重病理条件下的经典方法等效或非常接近。自动化促进了该程序的某些技术方面,简化了其在物种间的使用,并有助于在呼吸道疾病的临床前模型中更准确地估算FRC。>新的和引人注目的 (PV)曲线通常用于表征肺部疾病模型。尽管存在自动技术来构建部分PV曲线,但是传统上采用手动操作的方法来构建全范围曲线。在这项研究中,全程PV曲线技术是使用计算机控制的活塞通风机自动进行的。自动化技术简化了该技术,促进了其向其他物种的扩展,并启发了一种估算实验室啮齿动物功能性残留能力的新颖方法。

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