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It was a First Class Start which Laid the Basis for a Promising Future Experience from Comparative Studies on Gravity Related Behavior in Animals and Consequences for Future Experiemnts

机译:这是一个第一类开始,为未来的动物和后果的重力相关行为的比较研究提供了有希望的未来经验的基础。

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The main title was chosen in imitation of the headline of a lecture given by H.S. Wolff at the ESA-Symposium "Life Odyssey" in Maastricht/NL (1999) to contrast his pessimistic view of the science output from biological microgravity studies during the past 25 years with an optimistic view of the author who had the opportunity for studies on the gravity sensory systems of developing vertebrates and insects during the space missions STS-55, STS-84, and STS-90, and who was stimulated by this experience to undertake any effort to extent these studies on the International Space Station ISS. We studied compensatory eye and head movements induced by a lateral roll of the animals, and we found that exposure to both microgravity and hypergravity affect their development. Future studies have to consider long-term exposures to altered gravitational conditions to find answers to two questions, the mechanism of adaptation during exposure, and the degree of residual effects after becoming an adult animal and also after re-entry to 1G-conditions. The main hypothesis on the development of animals in space is that a fertilized egg will be converted to a normal adult animal guided by physiological and morphological set-points which represent the genetic program. In case of developmental retardations or accelerations or otherwide occurring deviations from normal structural and physiological development during specific periods of the embryonic and postembryonic life, these genetically defined supervisors activate readaptive mechanisms which direct the developmental processes towards normality, i.e., stability. Thus, an orbit-stabilized organism will be dramatically disturbed after return to Earth. Because this failure will need support to reach neuronal stability, research has also to consider the analysis of mechanisms which are able to overcome these disturbances. This research will open the door to applications because it forms a bridge to human medicine with its analytical research on control procedures over neuropathological mechanisms.
机译:主标题被选为模仿由H.S.给出一个演讲的标题的沃尔夫在马斯特里赫特/荷兰的欧空局专题讨论会“生命奥德赛”(1999年),与笔者看好谁了对研究的机会,在过去的25年对比他从生物微重力研究输出科学的悲观看法在太空飞行任务STS-55,STS-84发展中的脊椎动物和昆虫的重力感觉系统,以及STS-90,和谁是这方面的经验刺激承担任何努力程度上国际空间站ISS这些研究。我们研究了动物的横向侧倾引起代偿眼睛和头部的运动,我们发现,暴露在两个微重力和超重影响其发育。今后的研究中必须要考虑长期暴露于改变重力条件下找到答案两个问题,适应的曝光过程中的机制,而残余影响成为一个成年动物也之后再进入到1G条件后的程度。动物在空间中的发展的主要假设是,一个受精卵将被转换成由生理和形态设定点代表遗传程序引导的正常成年动物。在发育的延迟或加速或从在胚胎和胚后生命的特定期间正常结构和生理发展otherwide发生偏差的情况下,这些遗传确定的监督员激活哪个引向常态,即稳定性发育过程readaptive机制。因此,轨道稳定的生物将急剧返回地球时会受到干扰。因为这种故障​​需要支持,以达到稳定神经细胞,研究也考虑其能够克服这些干扰机制的分析。这项研究将打开大门,应用,因为它形成了一个桥梁,人类医学与病理上控制机制的过程分析研究。

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