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The influence of space flights on water-electrolytes turnover and its regulation.

机译:空间飞行对水电解质周转的影响及其调节。

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A study of water-electrolyte exchange, the condition of water milieu of the organism, and the volume- and electrolyte homeostasis regulation in space flights, and also in postflight period has shown the important role of the water-salt homeostasis in adaptation of the human and animal organism to weightlessness. Obviously, downturn of food consumption, renal excretion and the intestine output seem to be caused by suppression of activity of mechanisms of ion deposition. The most intensive changes of the liquid milieu volumes occur in the first days of weightlessness or in its ground simulation. And, with prolonged duration, the changes of extracellular liquid volume and the volume of plasma do not extend. After termination of long space flights, activation of renin-aldosterone systems occurs as well as a decrease in efficiency of antidiuretic hormone, misbalance of pressor/unpressor prostanoids. In the period of re-adaptation after space flights, development of desensitization of kidneys to endogenous ADH occurs. This is the basis for researches directed to improvement of the existing scheme of correction of the hydrogenous status of the astronaut organism in the closing stage of flight. zhurnal imeni I.M. Sechenova / Rossi inverted question markskaia akademiia nauk.
机译:水电解质交换研究,生物体的水环境状况,以及太空飞行中的体积和电解质稳态调节,以及在后期的时间内表现出水盐稳态在适应人类的重要作用和动物生物到失重。显然,食品消耗低迷,肾脏排泄和肠产量似乎是由于抑制离子沉积机制的活性而引起的。液体Milieu卷的最强烈变化发生在失重或地面模拟的第一天。并且,随着延长的持续时间,细胞外液体体积的变化和等离子体的体积不会延伸。在终止长空间航行后,发生肾素 - 醛固酮系统的激活以及抗性激素的效率降低,压力机/禁止前列腺的缺乏率。在太空飞行后重新适应的时期,发生肾脏脱敏对内源性ADH的脱敏。这是针对截止阶段的宇航员生物体氢化状态纠正现有方案的研究的基础。伊彭·伊梅尼I.M.Sehenova / Rossi倒立问题Markskaia Akademiia Nauk。

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