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Physiological effects of positive pressure breathing with pure oxygen and a low oxygen gas mixture

机译:纯氧气和低氧气混合物的正压呼吸的生理效应

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Introduction: Positive pressure breathing (PPB) can cause circulatory dysfunction due to peripheral pooling of blood. This study explored a better way at ground level to simulate pure oxygen PPB at 59,055 ft (18,000 m) by comparing the physiological changes during PPB with pure oxygen and low oxygen at ground level. Methods: Six subjects were exposed to 3 min of 69-mmHg PPB and 3 min of 59-mmHg PPB with pure oxygen and low oxygen while wearing the thoracic counterpressure jerkin inflated to 1 × breathing pressure and G-suit inflated to 3 and 4 × breathing pressure. Stroke volume (SV), cardiac output (CO), heart rate (HR), and peripheral oxygen saturation (SpO2) were measured. Subjects completed a simulating flying task (SFT) during 3-min PPB and scores were recorded. Results: HR and SV responses differed significantly between breathing pure oxygen and low oxygen. CO response was not significantly different for pure oxygen and low oxygen, the two levels of PPB, and the two levels of G-suit pressure. SpO2 declined as a linear function of time during low-oxygen PPB and there was a significant difference in SpO2 response for the two levels of PPB. The average score of SFT during pure oxygen PPB was 3970.5 ± 1050.4, which was significantly higher than 2708.0 ± 702.7 with low oxygen PPB. Conclusions: Hypoxia and PPB have a synergistic negative effect on both the cardiovascular system and SFT performance. PPB with low oxygen was more appropriate at ground level to investigate physiological responses during PPB and evaluate the protective performance of garments.
机译:简介:正压呼吸(PPB)可能由于外周血汇集而导致循环功能障碍。这项研究通过将PPB期间的生理变化与地面上的纯氧和低氧进行比较,探索了一种在地面上模拟59,055英尺(18,000 m)处纯氧PPB的更好方法。方法:六名受试者分别在纯氧和低氧下暴露于3分钟的69 mmHg PPB和3分钟的59 mmHg PPB中,同时戴上充气到1×呼吸压力的胸背压抽搐皮套,充气到3和4×呼吸压力。测量中风量(SV),心输出量(CO),心率(HR)和外周血氧饱和度(SpO2)。受试者在3分钟的PPB中完成了模拟飞行任务(SFT),并记录了得分。结果:呼吸纯氧和低氧之间的HR和SV反应显着不同。对于纯氧和低氧,PPB的两个水平和G服压力的两个水平,CO响应没有显着差异。在低氧PPB期间,SpO2随时间呈线性函数下降,并且两个水平的PPB的SpO2响应存在显着差异。纯氧PPB期间SFT的平均得分为3970.5±1050.4,明显高于低氧PPB的2708.0±702.7。结论:低氧和PPB对心血管系统和SFT性能均具有协同负作用。低氧的PPB在地面上更适合调查PPB期间的生理反应并评估服装的防护性能。

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