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前言 有时需要运送患者的美国空军飞机的大小、任务及航程,增加了供氧系统的任务。阿姆斯特朗实验室的临床医生、工程师和技术人员联合保障飞机和机上的医疗装置,保障医疗供氧需求。方法 在三个项目中运用研究和发展的原理对氧气供应的缺点进行鉴别和克服。①定量测定了军用飞机乘客供氧系统医疗性能和支持航空医疗后送(AE)运作的能力。当5个医疗呼吸模拟器模拟正常成人呼吸时,使用大流量计、压力计和一记录图带监测供氧系统的特性并使该
Preface Sometimes the size, mission and range of the U.S. Air Force aircraft needed to transport a patient increase the oxygen system’s mission. Armstrong Labs clinicians, engineers and technicians work together to secure aircraft and aircraft medical devices to ensure medical oxygen demand. Methods Using the principles of research and development in three projects, the shortcomings of oxygen supply were identified and overcome. ① Quantitatively measured the medical performance of the military aircraft passenger oxygen system and the ability to support aeromedical evacuation (AE) operations. When five medical breath simulators simulate normal adult respiration, monitor the characteristics of the oxygen supply system using a large flow meter, pressure gauge, and a chart strip and allow the