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Comparison of functional residual capacity and static compliance of the respiratory system during a positive end-expiratory pressure (PEEP) ramp procedure in an experimental model of acute respiratory distress syndrome

机译:在急性呼吸窘迫综合征实验模型中,在呼气末正压(PEEP)斜升过程中呼吸系统的功能残余容量和静态顺应性的比较

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IntroductionFunctional residual capacity (FRC) measurement is now available on new ventilators as an automated procedure. We compared FRC, static thoracopulmonary compliance (Crs) and PaO2 evolution in an experimental model of acute respiratory distress syndrome (ARDS) during a reversed, sequential ramp procedure of positive end-expiratory pressure (PEEP) changes to investigate the potential interest of combined FRC and Crs measurement in such a pathologic state.MethodsARDS was induced by oleic acid injection in six anesthetised pigs. FRC and Crs were measured, and arterial blood samples were taken after induction of ARDS during a sequential ramp change of PEEP from 20 cm H2O to 0 cm H2O by steps of 5 cm H2O.ResultsARDS was responsible for significant decreases in FRC, Crs and PaO2 values. During ARDS, 20 cm H2O of PEEP was associated with FRC values that increased from 6.2 ± 1.3 to 19.7 ± 2.9 ml/kg and a significant improvement in PaO2. The maximal value of Crs was reached at a PEEP of 15 cm H2O, and the maximal value of FRC at a PEEP of 20 cm H2O. From a PEEP value of 15 to 0 cm H2O, FRC and Crs decreased progressively.ConclusionOur results indicate that combined FRC and Crs measurements may help to identify the optimal level of PEEP. Indeed, by taking into account the value of both parameters during a sequential ramp change of PEEP from 20 cm H2O to 0 cm H2O by steps of 5 cm H2O, the end of overdistension may be identified by an increase in Crs and the start of derecruitment by an abrupt decrease in FRC.
机译:简介现在可以通过自动程序在新呼吸机上进行功能残余容量(FRC)测量。我们在急性呼气末正压(PEEP)改变的反向顺序斜坡过程中,在急性呼吸窘迫综合征(ARDS)实验模型中比较了FRC,静态胸膜肺顺应性(Crs)和PaO2演变,以研究联合FRC的潜在兴趣方法通过在6只麻醉猪中注射油酸诱导ARDS。测量PEC从20 cm H2O到0 cm H2O逐步倾斜5 cm H2O期间的ARDS诱导后,测量FRC和Crs,并采集动脉血样本。结果ARDS导致FRC,Crs和PaO2显着降低价值观。在ARDS期间,PEEP 20 cm H2O与FRC值相关,FRC值从6.2±1.3增加到19.7±2.9 ml / kg,并且PaO2显着改善。在PEEP为15 cm H2O时达到Crs的最大值,而在PEEP为20 cm H2O时达到FRC的最大值。从15至0 cm H2O的PEEP值开始,FRC和Crs逐渐降低。结论我们的结果表明,FRC和Crs的组合测量可能有助于确定PEEP的最佳水平。实际上,通过考虑在PEEP从20 cm H2O到0 cm H2O逐步倾斜变化(以5 cm H2O为步长)期间的两个参数的值,可以通过Crs的增加和开始招募来识别过度扩张的结束FRC突然减少。

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