Fischer Hendrik S, Ullrich Tim L, Bührer Christoph, Czernik Christoph, Schmalisch Gerd
Department of Neonatology, Charité University Medical Center, Berlin, Germany.
Department of Neonatology, Charité University Medical Center, Berlin, Germany.
Med Eng Phys. 2017 Feb;40:87-94. doi: 10.1016/j.medengphy.2016.12.005. Epub 2016 Dec 30.
Clinical studies show that non-invasive respiratory support by continuous positive airway pressure (CPAP) affects gas conditioning in the upper airways, especially in the presence of mouth leaks. Using a new bench model of neonatal CPAP, we investigated the influence of mouth opening on oropharyngeal temperature and humidity. The model features the insertion of a heated humidifier between an active model lung and an oropharyngeal head model to simulate the recurrent expiration of heated, humidified air. During unsupported breathing, physiological temperature and humidity were attained inside the model oropharynx, and mouth opening had no significant effect on oropharyngeal temperature and humidity. During binasal CPAP, the impact of mouth opening was investigated using three different scenarios: no conditioning in the CPAP circuit, heating only, and heated humidification. Mouth opening had a strong negative impact on oropharyngeal humidification in all tested scenarios, but heated humidification in the CPAP circuit maintained clinically acceptable humidity levels regardless of closed or open mouths. The model can be used to test new equipment for use with CPAP, and to investigate the effects of other methods of non-invasive respiratory support on gas conditioning in the presence of leaks.
临床研究表明,持续气道正压通气(CPAP)进行的无创呼吸支持会影响上呼吸道的气体调节,尤其是在存在口漏的情况下。我们使用一种新的新生儿CPAP实验台模型,研究了张口对口咽温度和湿度的影响。该模型的特点是在一个活动的模型肺和一个口咽头部模型之间插入一个加热加湿器,以模拟温热、湿润空气的反复呼出。在无辅助呼吸期间,模型口咽内部达到了生理温度和湿度,张口对口咽温度和湿度没有显著影响。在双侧鼻CPAP期间,使用三种不同的情况研究了张口的影响:CPAP回路中无调节、仅加热以及加热加湿。在所有测试情况下,张口对口咽加湿有强烈的负面影响,但CPAP回路中的加热加湿无论口是闭合还是张开都能维持临床上可接受的湿度水平。该模型可用于测试与CPAP一起使用的新设备,并研究在存在泄漏的情况下其他无创呼吸支持方法对气体调节的影响。