首页> 外文期刊>BioMedical Engineering OnLine >Continuous negative extrathoracic pressure combined with high-frequency oscillation improves oxygenation with less impact on blood pressure than high-frequency oscillation alone in a rabbit model of surfactant depletion
【24h】

Continuous negative extrathoracic pressure combined with high-frequency oscillation improves oxygenation with less impact on blood pressure than high-frequency oscillation alone in a rabbit model of surfactant depletion

机译:在兔子表面活性剂耗竭模型中,连续负胸外压力与高频振荡相结合,改善了氧合,对血压的影响比单独的高频振荡少

获取原文
           

摘要

Background Negative air pressure ventilation has been used to maintain adequate functional residual capacity in patients with chronic muscular disease and to decrease transpulmonary pressure and improve cardiac output during right heart surgery. High-frequency oscillation (HFO) exerts beneficial effects on gas exchange in neonates with acute respiratory failure. We examined whether continuous negative extrathoracic pressure (CNEP) combined with HFO would be effective for treating acute respiratory failure in an animal model. Methods The effects of CNEP combined with HFO on pulmonary gas exchange and circulation were examined in a surfactant-depleted rabbit model. After induction of severe lung injury by repeated saline lung lavage, 18 adult white Japanese rabbits were randomly assigned to 3 groups: Group 1, CNEP (extra thoracic negative pressure, -10 cmH2O) with HFO (mean airway pressure (MAP), 10 cmH2O); Group 2, HFO (MAP, 10 cmH2O); and Group 3, HFO (MAP, 15 cmH2O). Physiological and blood gas data were compared among groups using analysis of variance. Results Group 1 showed significantly higher oxygenation than Group 2, and the same oxygenation with significantly higher mean blood pressure compared to Group 3. Conclusion Adequate CNEP combined with HFO improves oxygenation with less impact on blood pressure than high-frequency oscillation alone in an animal model of respiratory failure.
机译:背景技术负压通气已被用于在患有慢性肌肉疾病的患者中维持足够的功能残余能力,并降低右心外科手术期间的经肺压并改善心输出量。高频振荡(HFO)对患有急性呼吸衰竭的新生儿的气体交换产生有益的影响。我们检查了连续负胸外压(CNEP)与HFO结合是否可有效治疗动物模型中的急性呼吸衰竭。方法在贫表面活性剂兔模型中,研究了CNEP和HFO联合对肺气体交换和循环的影响。通过反复盐水灌洗诱发严重肺损伤后,将18只成年白色日本兔随机分为3组:第1组,CNEP(胸外负压,-10 cmH 2 O)和HFO(平均气道压力(MAP),10 cmH 2 O);第2组,HFO(MAP,10 cmH 2 O);第3组,HFO(MAP,15 cmH 2 O)。使用方差分析比较各组之间的生理和血气数据。结果第1组的氧合明显高于第2组,而与第3组相比,相同的氧合具有更高的平均血压。结论在动物模型中,充分的CNEP联合HFO改善的氧合对血压的影响要小于单独的高频振荡。呼吸衰竭。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号