Messer Ben, Tedd Hilary, Doris Tom, Mountain Andrew, Gatilogo Cris, Sovani Milind
North East Assisted Ventilation Service, Royal Victoria Infirmary, Newcastle-upon-Tyne NHS Hospitals NHS Foundation Trust, Newcastle-upon-Tyne, UK.
Electronics and Medical Engineering, Royal Victoria Infirmary, Newcastle-upon-Tyne NHS Hospitals NHS Foundation Trust, Newcastle-upon-Tyne, UK.
J Intensive Care Soc. 2022 May;23(2):124-131. doi: 10.1177/1751143720980280. Epub 2020 Dec 16.
The COVID-19 pandemic has resulted in increased admissions with respiratory failure and there have been reports of oxygen failure and shortages of machines to deliver ventilation and Continuous Positive Airway Pressure (CPAP). Domiciliary ventilators which entrain room air have been widely used during the pandemic. Poor outcomes reported with non-invasive respiratory support using ventilators which lack an oxygen blender could be related to an unreliable Fraction of inspired O (FiO). Additionally, with concerns about oxygen failure, the variety of ventilator circuits used as well as differing peak inspiratory flow rates (PIFR) could impact on the FiO delivered during therapy with domiciliary ventilators.
In a series of bench tests, we tested the effect of choice of circuit and different PIFR on the FiO achieved during simulation of ventilation and CPAP therapy using domiciliary ventilators.
FiO was highly dependent upon the type of circuit used with circuits with an active exhalation valve achieving similar FiO at lower oxygen flow rates than circuits using an exhalation port. During CPAP therapy, high PIFR resulted in significantly lower FiO than low PIFR.
This study has implications for oxygen usage as well as delivery of non-invasive respiratory support during therapy with domiciliary ventilators when these are used during the second wave of COVID-19.
新型冠状病毒肺炎疫情导致呼吸衰竭住院人数增加,有报道称出现了氧气供应不足以及用于提供通气和持续气道正压通气(CPAP)的设备短缺的情况。在疫情期间,吸入室内空气的家用呼吸机得到了广泛使用。使用缺乏氧气混合器的呼吸机进行无创呼吸支持时报告的不良结果可能与吸入氧分数(FiO₂)不可靠有关。此外,出于对氧气供应不足的担忧,所使用的呼吸机回路种类以及不同的吸气峰流速(PIFR)可能会影响家用呼吸机治疗期间输送的FiO₂。
在一系列实验台测试中,我们测试了回路选择和不同PIFR对使用家用呼吸机模拟通气和CPAP治疗期间所达到的FiO₂的影响。
FiO₂高度依赖于所使用的回路类型,带有主动呼气阀的回路在较低氧气流速下能达到与使用呼气端口的回路相似的FiO₂。在CPAP治疗期间,高PIFR导致的FiO₂显著低于低PIFR。
本研究对在新型冠状病毒肺炎第二波疫情期间使用家用呼吸机进行治疗时的氧气使用以及无创呼吸支持的提供具有启示意义。