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Revised hypothesis and future perspectives.

机译:修订假设和未来的观点。

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摘要

Results from space have been unexpected and not predictable from the results of ground-based simulations. Therefore, the concept of how weightlessness and gravity modulates the regulation of body fluids must be revised and a new simulation model developed. The main questions to ask in the future are the following: Does weightlessness induce a diuresis and natriuresis during the initial hours of space flight leading to an extracellular and intravascular fluid volume deficit? Can sodium in excess be stored in a hitherto unknown way, particularly during space flight? Why are fluid and sodium retaining systems activated by spaceflight? Why are the renal responses to saline and water stimuli in space attenuated compared with those of ground simulations? How can the effects of weightlessness on fluid and electrolyte regulation be correctly simulated on the ground? The information obtained from space may be of relevance to fluid and electrolyte balance in edematous patients.
机译:空间的结果是出乎意料的,从基于地面模拟结果的结果出现而不可预测。 因此,必须修订失重和重力如何调节体液调节的概念,并且开发了一种新的仿真模型。 在未来提出的主要问题如下:失重在空间飞行的初始时间诱导DIUNSIS和Natriureis,导致细胞外和血管内液体体积缺损? 钠钠可以以迄今为止的方式储存,特别是在太空飞行期间? 为什么通过空间激活液体和钠挡土系统? 为什么与地面模拟相比,为什么对节省盐水和水刺激的肾脏反应? 如何在地面上正确模拟失重对流体和电解质调节的影响? 从太空获得的信息可能与水肿患者的流体和电解质平衡有关。

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