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首页> 外文期刊>Journal of Korean medical science. >Effects of Perfluorocarbon Associated High Frequency Oscillatory Ventilation on Hemodynamics and Gas Exchange in the Newborn Piglets with Respiratory Distress
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Effects of Perfluorocarbon Associated High Frequency Oscillatory Ventilation on Hemodynamics and Gas Exchange in the Newborn Piglets with Respiratory Distress

机译:全氟化碳相关的高频通气对新生猪呼吸窘迫的血流动力学和气体交换的影响

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摘要

We sought to know whether there is a further improvement in gas exchange when partial liquid ventilation (PLV) is added to high-frequency oscillatory ventilation (HFOV) in a piglet model of saline lavage-induced acute lung injury. Seven 7-9 day-old newborn piglets of mixed strain were treated with repeated saline lavage to achieve a uniform degree of acute lung injury. Then, HFOV were applied to the subject. Four animals received two consecutive doses (15 mL/kg) of perfluorodecalin at 30-min interval (PFC+HFOV group). The other three animals remained on HFOV alone (HFOV-only group). Repetitive lung lavage led to a significant acute aggravation in both gas exchange and hemodynamic parameters. Subsequent application of HFOV produced a significant rapid recovery in both gas exchange and hemodynamic parameters to near baseline levels. During and after perfluorodecalin dosing, there were no significant changes in gas exchange or hemodynamic parameters over time in both groups, and no significant differences in gas exchange or hemodynamic parameters between groups. We concluded that the addition of 30 mL/kg of perfluorodecalin to HFOV showed no detrimental effect on hemodynamics, but did not produce a significant improvement in gas exchange over a three-hour period.
机译:我们试图知道在盐水灌洗引起的急性肺损伤的仔猪模型中,当部分液体通气(PLV)添加到高频振荡通气(HFOV)时,气体交换是否有进一步的改善。用重复的盐水灌洗处理7只7-9日龄混合品系的新生仔猪,以达到均匀程度的急性肺损伤。然后,将HFOV应用于受试者。四只动物以30分钟间隔连续两次接受全氟萘烷剂量(15 mL / kg)(PFC + HFOV组)。其他三只动物仅单独使用HFOV(仅HFOV组)。重复洗肺会导致气体交换和血液动力学参数的显着急性加重。 HFOV的后续应用可在气体交换和血液动力学参数方面均显着快速恢复至接近基线水平。在全氟萘烷给药期间和之后,两组的气体交换或血液动力学参数均未随时间发生显着变化,两组之间的气体交换或血液动力学参数也无显着差异。我们得出的结论是,向HFOV中添加30 mL / kg的全氟萘烷对血流动力学没有不利影响,但在三小时内未对气体交换产生显着改善。

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