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EnviFuge - A Novel Approach for Space Medicine and Life Science Experiments: Research under Conditions of Artificial Gravity (AG) and Hyper-g Conditions for Applications in Space and on Earth

机译:环境 - 一种新的空间医学和生命科学实验方法:在空间和地球上应用中的人工重力(AG)和Hyper-G条件的研究

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The application of AG generated by short diameter centrifuges has been proposed by a number of scientists and space agencies as a countermeasure against microgravity induced physiological degradation during long-term space missions, e.g. to Mars. The major objective of xnviFuge is to obtain extensive knowledge of hypergravity effects on the cardiovascular system, the cardio-vegetative regulation, the orthostatic regulation and other physiological systems. Therefore a unique research and training device, the :enviFuge, has been defined by DLR and developed by AMST Systemtechnik GmbH, and is located at DLR's brand-new :envihab in Cologne. Operation of this multipurpose research and training centrifuge started in the middle of 2013. :enviFuge features multiple research capabilities, including passive spinning, several kinds of locomotion exercises and ergometric training. Up to four subjects may be tested in parallel - each of them may perform different research relevant tasks and may be additionally and individually exposed to g-loads during a run. Scientists and physicians will have the unique opportunity to perform remotely controlled medical ultrasonics and highly advanced motion capturing, including precise body kinematics and kinetics tracking, during centrifugation. The outstanding modular design of :enviFuge provides easy and highly flexible possibilities for adaptation in future research applications. An important issue that will be considered during assessments on :enviFuge is the significant gravity gradient in the head-to-toe axis, which may be the cause for a number of unexpected physiological side effects within the human body during application of AG. Heart Rate Variability (HRV) measurement can be considered as a promising method for medical control and monitoring during centrifugation sessions. Especially the g-load should be adapted to the patterns of HRV, since this method offers a profound insight into cardiovascular and neurovegetative regulation. Besides applications of AG in the field of space exploration, short diameter centrifuges such as :enviFuge will be beneficial in other scientific disciplines, such as sports medicine and rehabilitation or therapy of immobilized patients.
机译:AG的由短径离心机产生的应用程序已经提出了通过许多科学家和空间机构的作为对微重力的对策在长期空间任务,例如引起的生理降解去火星。 xnviFuge的主要目的是获得心血管系统,心营养调节,体位调节等生理系统上的超重影响广泛的知识。因此,一个独特的研究和训练设备,则:enviFuge,已被定义DLR和AMST Systemtechnik有限公司开发的,位于DLR的全新:envihab在科隆。这种多用途研究和培训离心机的操作,开始在2013年中期:enviFuge设有多个研究能力,包括被动式纺纱,几种运动锻炼和测力培训。多达四个科目可以并行测试 - 它们可以各自执行不同的研究相关的任务,并且可以在运行过程中还和单独暴露在G-负载。科学家和医师将具有在离心过程中执行远程控制的医疗超声和高度先进的运动捕捉,包括精确的身体的运动学和动力学跟踪的独特机会。的突出模块化设计:enviFuge提供了在今后的研究应用适应简单,高度灵活的可能性。将上评估期间可以考虑的一个重要问题:enviFuge是在头部到脚趾轴线显著重力梯度,其可以是为一些AG的应用期间在人体内的生理意想不到的副作用的原因。心脏心率变异(HRV)测量可以被认为是用于医疗用控制一个有前途的方法,并在离心会话监测。特别是克负荷应适应HRV的图案,由于该方法提供了一个深刻洞察心血管和植物神经调节。除了在空间探索领域AG的应用中,短径离心机如:enviFuge将在其他科学学科,如运动医学和康复或固定患者的治疗有益。

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