首页> 外文会议>International Conference on High Pressure Bioscience and Biotechnology, Heidelberg, August 30 - September 3, 1998 >The Effects of Oxygen-Argon Gaseous Mixtures on Humans Under Long-Term Hyperbaric Condition
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The Effects of Oxygen-Argon Gaseous Mixtures on Humans Under Long-Term Hyperbaric Condition

机译:长期高压条件下氧气氩气混合气对人体的影响

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The goal of the present investigation was to estimate the human performance and adaptation of physiological systems during long-term exposure in argon-nitrogen-oxygen atmosphere. Four male volunteers participated in simulated diving to 10 m performed in the diving complex "GVK-250". The subjects were exposed during 7 d to the following gas mixture (in partial pressures): oxygen - 0.2+-0.005 kg/cm~2, nitrogen - 0.8+-0.01 kg/cm~2 and argon - 1.0+-0.01 kg/cm~2. The volunteers performed physical and mental work in order to study mechanisms of cardiovascular, respiratory and nervous systems regulation under physical activity. We found no modifications of normal physiological characteristics of central nervous, cardiovascular, respiratory systems' tests and in results of urine biochemical tests. Blood biochemical measurements did not show significant differences from control levels except shifts in lipid metabolism which are often observed during long-term simulated deep diving. Positive effects in adaptation to hypoxic condition were revealed under argon gas mixture exposure. Under hyperbaric pressure a workload of 100 Wt, the volunteers performed this work 62percent higher in 15percent argon-oxygen mixture than in 15percent nitrox. We conclude that argon could be assumed as a physiologically active gas actively participating in redox-reactions and causing increased resistance of the organisms to hypoxic hypoxia.
机译:本研究的目的是评估在氩-氮-氧气氛下长期暴露期间人类的行为和生理系统的适应性。四名男性志愿者参加了在“ GVK-250”潜水区进行的长达10 m的模拟潜水。受试者在7 d内暴露于以下混合气体中(分压):氧气-0.2 + -0.005 kg / cm〜2,氮气-0.8 + -0.01 kg / cm〜2和氩气-1.0 + -0.01 kg /厘米〜2。志愿者进行了身体和精神工作,以研究体育锻炼下心血管,呼吸和神经系统调节的机制。我们没有发现中枢神经,心血管,呼吸系统的测试以及尿液生化测试的正常生理特性发生改变。血液生化测量结果未显示与对照水平有显着差异,除了在长期模拟深潜中经常观察到的脂质代谢变化。暴露于氩气混合物中显示出对低氧条件适应的积极作用。在高压下的工作量为100 Wt,志愿者在15%的氩氧混合物中完成这项工作的效率比在15%的硝氧下高62%。我们得出的结论是,可以认为氩是一种生理活性气体,它积极参与氧化还原反应并引起生物体对缺氧性缺氧的抵抗力增加。

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