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Heliox reduces respiratory system resistance in respiratory syncytial virus induced respiratory failure

机译:Heliox降低了由呼吸道合胞病毒引起的呼吸衰竭的呼吸系统抵抗力

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IntroductionRespiratory syncytial virus (RSV) lower respiratory tract disease is characterised by narrowing of the airways resulting in increased airway resistance, air-trapping and respiratory acidosis. These problems might be overcome using helium-oxygen gas mixture. However, the effect of mechanical ventilation with heliox in these patients is unclear. The objective of this prospective cross-over study was to determine the effects of mechanical ventilation with heliox 60/40 versus conventional gas on respiratory system resistance, air-trapping and CO2 removal.MethodsMechanically ventilated, sedated and paralyzed infants with proven RSV were enrolled within 24 hours after paediatric intensive care unit (PICU)admission. At T = 0, respiratory system mechanics including respiratory system compliance and resistance, and peak expiratory flow rate were measured with the AVEA ventilator. The measurements were repeated at each interval (after 30 minutes of ventilation with heliox, after 30 minutes of ventilation with nitrox and again after 30 minutes of ventilation with heliox). Indices of gas exchange (ventilation and oxygenation index) were calculated at each interval. Air-trapping (defined by relative change in end-expiratory lung volume) was determined by electrical impedance tomography (EIT) at each interval.ResultsThirteen infants were enrolled. In nine, EIT measurements were performed. Mechanical ventilation with heliox significantly decreased respiratory system resistance. This was not accompanied by an improved CO2 elimination, decreased peak expiratory flow rate or decreased end-expiratory lung volume. Importantly, oxygenation remained unaltered throughout the experimental protocol.ConclusionsRespiratory system resistance is significantly decreased by mechanical ventilation with heliox (ISCRTN98152468).
机译:简介呼吸道合胞病毒(RSV)下呼吸道疾病的特征是气道变窄,导致气道阻力增加,气管阻塞和呼吸性酸中毒。使用氦-氧气体混合物可以克服这些问题。但是,尚不清楚在这些患者中使用氦氧混合气进行机械通气的效果。这项前瞻性交叉研究的目的是确定使用heliox 60/40与常规气体进行机械通气对呼吸系统抵抗力,空气诱捕和CO2清除的方法。方法将机械通气,镇静和麻痹的婴儿经证实为RSV儿科重症监护病房(PICU)入院24小时后。在T = 0时,使用AVEA呼吸机测量呼吸系统力学,包括呼吸系统顺应性和阻力,以及最大呼气流速。在每个间隔(在使用氦氧混合气通气30分钟后,使用硝酸氧离子通气30分钟后和使用氦氧混合气通气30分钟之后再次)重复测量。在每个时间间隔计算气体交换指数(通风和氧合指数)。在每个时间间隔通过电阻抗断层扫描(EIT)来测定空气诱捕(由呼气末肺体积的相对变化确定)。结果招募了13例婴儿。在九项中,进行了EIT测量。日光的机械通气显着降低了呼吸系统阻力。这并没有改善CO2消除,降低呼气峰值流速或降低呼气末肺体积。重要的是,在整个实验方案中,氧合作用保持不变。结论通过使用氦氧混合气(ISCRTN98152468)进行机械通气,呼吸系统阻力显着降低。

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