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Delivery of heliox with a semi-closed circuit during spontaneous breathing: a comparative economic theoretical study

机译:自发呼吸过程中半封闭的氦氧混合气输送:一项比较经济理论研究

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Background Heliox is a mixture of oxygen and helium which reduces airway resistance in patients with airway obstruction. In clinical practice, patients breathing spontaneously receive heliox via an open circuit. Recently, a semi-closed circuit for heliox administration has been proposed which minimizes consumption of heliox and therefore cost of the heliox therapy; although, the semi-closed circuit is associated with additional costs. The aim of the study is to conduct an economical analysis comparing total cost of heliox therapy using an open versus a semi-closed circuit in spontaneously breathing patients with airway obstruction. Methods Four different systems for heliox administration were analyzed: an open circuit and three alternatives of a semi-closed circuit involving a custom made semi-closed circuit and two standard anesthesia machines. Total costs of heliox therapy were calculated for all the systems. For calculation of gas consumption, the clinical procedures limiting continuous heliox therapy including the aerosol therapy, personal hygiene and nutrition were taken into account. A sensitivity analysis was conducted for main input variables that may influence the results of the study. Results Price of gases consumed by a semi-closed system represents less than 20?% of price of gases when a standard open circuit is used. This represents a saving of approximately 540 EUR per patient. The initial cost of the custom-made semi-closed circuit recuperates after treatment of 18 patients. The corresponding number of patients is 32 when a low-cost anesthesia machine is initially acquired and rises to 69 when a highly advanced anesthesia machine is considered. Conclusions Heliox therapy in spontaneously breathing patients using a semi-closed circuit becomes more cost-effective compared to the open circuit, currently used in clinical practice, when applied in a sufficient number of cases. The impact of finding a cheaper way of heliox administration on the clinical practice needs to be ascertained.
机译:背景氦氧混合气是氧气和氦气的混合物,可降低气道阻塞患者的气道阻力。在临床实践中,自发呼吸的患者会通过开路接受氦氧混合气。最近,已经提出了一种用于氦氧混合气给药的半封闭回路,该电路可以将氦氧混合气的消耗最小化,从而将氦氧混合气的治疗成本降至最低。但是,半封闭电路会带来额外的成本。该研究的目的是进行经济分析,比较自发呼吸道气道阻塞患者使用开放式或半封闭式回路的日光疗法的总成本。方法分析了四种不同的氦氧混合气给药系统:一个开路和一个半闭路的三个替代方案,其中包括定制的半闭路和两个标准麻醉机。计算了所有系统的日光疗法的总费用。为了计算气体消耗,考虑了限制连续氦氧疗法的临床程序,包括气雾疗法,个人卫生和营养。对可能影响研究结果的主要输入变量进行了敏感性分析。结果半封闭系统消耗的气体价格不到使用标准开路时的气体价格的20%。这表示每位患者可节省约540欧元。定制的半闭合回路的初​​始成本在治疗18位患者后恢复。最初购买低成本麻醉机时,相应的患者数量为32,而考虑使用高级麻醉机时,相应的患者数量增加至69。结论与目前在临床实践中使用的开路相比,使用半闭路自发呼吸患者进行Heliox疗法的成本效益更高,适用于大量病例。需要确定找到更便宜的日光照射方式对临床实践的影响。

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