首页> 美国卫生研究院文献>Anesthesiology Research and Practice >The Effect of Airway Pressure Release Ventilation on Pulmonary Catheter Readings: Specifically Pulmonary Capillary Wedge Pressure in a Swine Model
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The Effect of Airway Pressure Release Ventilation on Pulmonary Catheter Readings: Specifically Pulmonary Capillary Wedge Pressure in a Swine Model

机译:呼吸道压力释放通气对肺导管读数的影响:在猪模型中特别是肺毛细血管楔压

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摘要

Background. Airway pressure release ventilation (APRV) is a mode of mechanical ventilation that theoretically believed to improve cardiac output by lowering right atrial pressure. However, hemodynamic parameters have never been formally assessed. Methods. Seven healthy swine were intubated and sedated. A baseline assessment of conventional ventilation (assist control) and positive end-expiratory pressure (PEEP) of 5 cm H2O was initiated. Ventilator mode was changed to APRV with incremental elevations of CPAP-high from 10 to 35 cm H2O. After a 3-to-5-minute stabilization period, measurements of hemodynamic parameters (PCWP, LAP, and CVP) were recorded at each level of APRV pressure settings. Results. Increasing CPAP caused increased PCWP and LAP measurements above their baseline values. Mean PCWP and LAP were linearly related (LAP = 0.66PCWP + 4.5 cm H2O, R 2 = 0.674, and P < .001) over a wide range of high and low CPAP values during APRV. With return to conventional ventilation, PCWP and LAP returned to their baseline values. Conclusion. PCWP is an accurate measurement of LAP during APRV over variable levels of CPAP. However, PCWP and LAP may not be accurate measurements of volume when CPAP is utilized.
机译:背景。气道压力释放通气(APRV)是一种机械通气模式,理论上可以通过降低右心房压力来改善心输出量。但是,从未对血液动力学参数进行正式评估。方法。将七只健康的猪插管并镇静。开始对常规通气(辅助控制)和呼气末正压(PEEP)为5 cm H2O进行基线评估。呼吸机模式更改为APRV,CPAP高的增量从10到35 cm H2O升高。在3至5分钟的稳定期后,在每个APRV压力设置水平下记录血流动力学参数(PCWP,LAP和CVP)的测量值。结果。 CPAP的增加导致PCWP和LAP测量值高于其基线值。 PCWP和LAP的平均值在很宽的高和宽范围内呈线性相关(LAP = 0.66 * PCWP + 4.5 cm H2O,R 2 = 0.674,P <.001) APRV期间CPAP值较低。恢复常规通风后,PCWP和LAP恢复到其基线值。结论。 PCWP是APRV在CPAP可变水平上对LAP的准确测量。但是,当使用CPAP时,PCWP和LAP可能不是精确的体积测量值。

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