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A closed-loop reduced oxygen breathing device for inducing hypoxia in humans.

机译:用于在人体内引起缺氧的闭环还原氧气呼吸装置。

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BACKGROUND: Hypoxia poses a documented threat to aerospace and diving operations in healthy people and is a component of many clinical conditions. Practical training for aircrew, and research on clinically relevant hypoxic conditions frequently rely exclusively on large, expensive hypobaric chambers. PURPOSE: Here we describe and report the efficacy of a compact, economical, closed-loop rebreather-type reduced-oxygen breathing device (ROBD) for hypoxia induction in humans. METHODS: Subjects were four healthy student Naval flight surgeons. During baseline, subjects breathed normoxic air (21% O2, equivalent to sea-level). Baseline was followed by an altitude period, during which participants were exposed to hypoxic air (about 10% O2, approximating 5,486 m [18,000 ft mean sea-level]) for 30 min followed by a normoxic recovery period. Subjects' peripheral arterial oxygen saturation (SpO2), BP, impedance cardiography, cardiac output, and systemic vascular resistance served as dependent measures along with the fraction of inspired oxygen (FiO2). RESULTS: Circuit FiO2 and subjects' SpO2 were significantly lower during the altitude period than the baseline and recovery periods. HR and cardiac output were significantly higher, and systemic vascular resistance was significantly lower, during hypoxic air exposure than during baseline or recovery. CONCLUSIONS: These data support the closed-loop ROBD as a potentially useful device for training and research involving acute hypoxia in healthy and clinical populations.
机译:背景:低氧对健康人的航空航天和潜水作业构成了有据可查的威胁,并且是许多临床疾病的一部分。机组人员的实践培训以及对临床相关缺氧状况的研究通常仅依赖于大型,昂贵的低压舱。目的:在这里我们描述并报告一种紧凑,经济,闭环循环呼吸器式减氧呼吸器(ROBD)在人体中引起缺氧的功效。方法:受试者为四名健康的学生海军飞行外科医生。在基线期间,受试者呼吸了常氧空气(21%的氧气,相当于海平面)。在基线之后是一个高海拔期,在此期间,参与者暴露于低氧空气(约10%O2,约5,486 m [平均海平面18,000 ft])持续30分钟,然后是正常氧恢复期。受试者的外周动脉血氧饱和度(SpO2),血压,阻抗心动图,心输出量和全身血管阻力与吸入氧(FiO2)的分数一起作为相关指标。结果:海拔高度期间,回路FiO2和受试者的SpO2显着低于基线和恢复期。与基线或恢复期间相比,低氧暴露期间的HR和心输出量显着较高,而系统血管阻力显着较低。结论:这些数据支持闭环ROBD作为健康和临床人群中涉及急性缺氧的训练和研究的潜在有用的设备。

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