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基于磁悬浮的火星和月球重力模拟器。

Magnetic levitation-based Martian and Lunar gravity simulator.

作者信息

Valles J M, Maris H J, Seidel G M, Tang J, Yao W

机构信息

Department of Physics, Brown University, Providence, RI 02912, USA.

出版信息

Adv Space Res. 2005;36(1):114-8. doi: 10.1016/j.asr.2005.01.081.

Abstract

Missions to Mars will subject living specimens to a range of low gravity environments. Deleterious biological effects of prolonged exposure to Martian gravity (0.38 g), Lunar gravity (0.17 g), and microgravity are expected, but the mechanisms involved and potential for remedies are unknown. We are proposing the development of a facility that provides a simulated Martian and Lunar gravity environment for experiments on biological systems in a well controlled laboratory setting. The magnetic adjustable gravity simulator will employ intense, inhomogeneous magnetic fields to exert magnetic body forces on a specimen that oppose the body force of gravity. By adjusting the magnetic field, it is possible to continuously adjust the total body force acting on a specimen. The simulator system considered consists of a superconducting solenoid with a room temperature bore sufficiently large to accommodate small whole organisms, cell cultures, and gravity sensitive bio-molecular solutions. It will have good optical access so that the organisms can be viewed in situ. This facility will be valuable for experimental observations and public demonstrations of systems in simulated reduced gravity.

摘要

火星任务将使活体样本暴露于一系列低重力环境中。长期暴露于火星重力(0.38g)、月球重力(0.17g)和微重力环境下,预计会产生有害的生物学效应,但其中涉及的机制以及补救的可能性尚不清楚。我们提议开发一种设施,该设施能在可控的实验室环境中为生物系统实验提供模拟的火星和月球重力环境。磁可调重力模拟器将利用强非均匀磁场对样本施加与重力相反的磁体力。通过调整磁场,可以连续调节作用在样本上的总力。所考虑的模拟器系统由一个超导螺线管组成,其室温孔径足够大,可容纳小型完整生物体、细胞培养物以及对重力敏感的生物分子溶液。它将具有良好的光学通道,以便能够对生物体进行原位观察。该设施对于模拟低重力环境下系统的实验观测和公众展示将具有重要价值。

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