首页> 外文期刊>Military Medicine: Official Journal of AMSUS, The Society of the Federal Health Agencies >A Novel, Inexpensive Method to Monitor, Record, and Analyze Breathing Behavior During Normobaric Hypoxia Generated by the Reduced Oxygen Breathing Device
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A Novel, Inexpensive Method to Monitor, Record, and Analyze Breathing Behavior During Normobaric Hypoxia Generated by the Reduced Oxygen Breathing Device

机译:一种新的,廉价的方法来监测,记录和分析由减少的氧气呼吸装置产生的正常性缺氧期间呼吸行为

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Objectives: Since hypoxia remains one of the most important physiological hazards the aviation environment poses, military aviators are trained to recognize symptoms of hypoxia in order to implement appropriate safety procedures and countermeasures when hypoxia occurs. A widely used commercial instrument for hypoxia training, demonstration, and research is the Reduced Oxygen Breathing Device (ROBD). Here we describe a novel, inexpensive method to use the ROBD's breathing loop pressure (BLP) to measure respiration rate, a critically important response parameter for hypoxia. Methods: The ROBD can be controlled by a computer to export several variables including BLP, via the ROBD's RS232 port. An archived database was reanalyzed to assess the BLP data. New instrumentation added independent measures of respiration and expired oxygen and carbon dioxide; these measures were integrated with the ROBD output. Results: Analysis of the archived data showed that the BLP reflected realistic breathing patterns. The new instrumentation integrated well with the ROBD, and independently supported the potential of the BLP as a valid measure of respiration. Discussion: The ROBD's BLP data may provide a basis for a reliable, sensitive measure of respiration that is available at no additional cost.
机译:目标:由于缺氧仍然是航空环境姿势最重要的生理危害之一,军事飞行员培训才能识别缺氧的症状,以便在缺氧发生时实施适当的安全程序和对策。用于缺氧培训,演示和研究的广泛使用的商业仪器是减少的氧气呼吸装置(ROBD)。在这里,我们描述了一种使用ROBD的呼吸回路压力(BLP)来测量呼吸率的新颖,廉价的方法,这是缺氧的重点重要的反应参数。方法:COLD可以通过计算机控制,通过ROBD的RS232端口导出包括BLP的多个变量。重新分析归档数据库以评估BLP数据。新仪器介绍了独立的呼吸和过期氧气和二氧化碳的独立措施;这些措施与ROBD输出集成。结果:存档数据分析显示,BLP反映了现实呼吸图案。新仪器与ROBD集成良好,独立支持BLP的潜力作为有效的呼吸测量。讨论:ROBD的BLP数据可以为无需额外成本提供可靠,敏感的呼吸量度的基础。

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