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DEVICE FOR OPTIMIZATION breathing hypoxic gas exchange with AIR

机译:优化设备与AIR交换低氧气体

摘要

Optimizing gas exchange during breathing hypoxic air generated gipoksikatorom consisting in maintaining the concentration of carbon dioxide in the alveolar air at a close to physiological levels, rebreathing is performed through the additional dead space, embedded in the breathing circuit between the mask and gipoksikatora valve tee.; The optimal amount of the additional dead space within 75, 100, 125 or 150 ml determined by the magnitude of pulmonary ventilation, and concentration of carbon dioxide in the latter portion of the exhaled alveolar air. The required amount of the additional dead spaces define additional capacitance change of the cylinder dead space at constant it covers.; Normalization of the concentration of carbon dioxide in the alveolar air provides oxygen normal transition from the oxyhemoglobin in the tissue, which improves portability hypoxia and achieves its therapeutic potential or possible training effect.
机译:优化呼吸过程中产生的低氧空气产生的gipoksikatorom的气体交换,将肺泡空气中的二氧化碳浓度保持在接近生理水平,再通过附加的死空间进行呼吸,该死空间嵌在面罩和gipoksikatora阀三通之间的呼吸回路中。 ;在75、100、125或150毫升范围内,最佳附加死腔数量取决于肺通气量和呼出的肺泡空气后半部分的二氧化碳浓度。所需的附加死区数量决定了汽缸死区在其所覆盖的常数处的附加电容变化。肺泡空气中二氧化碳浓度的正常化提供了组织中氧合血红蛋白的氧正常转变,从而改善了便携式缺氧并获得了其治疗潜力或可能的训练效果。

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