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The Performance of a Miniature Plant Cultivation System Designed for Space Flight Application

机译:用于空间飞行应用的微型植物栽培系统的性能

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Constraints in both launch opportunities and the availability of in-flight resources for Shuttle and Space Station life science habitat facilities has presented a compelling impetus to improve the operational flexibility, efficiency and miniaturization of many of these systems. Such advances would not only invigorate the level of research being conducted in low Earth orbit but also present the opportunity to expand life science studies to outer space and planetary bodies. Work has been directed towards the development of a miniature Plant Cultivation Facility (PCF) capable of supporting the automated and controlled growth and spectral monitoring of small plant species such as Arabidopsis thaliana. This paper will present data on the design and operational performance of the PCF plant cultivation module, and the extent to which such a system may be used to support plant growth studies in and beyond low Earth orbit.
机译:发射机会的限制和航天飞机和空间站生活科学栖息地设施的飞行资源的可用性提出了一种强大的推动,提高了许多这些系统的运营灵活性,效率和小型化。此类进步不仅会使在低地球轨道中进行的研究水平,而且还提供了将生命科学研究扩展到外太空和行星机构的机会。工作已经针对开发了一种微型植物培养设施(PCF),能够支持自动化和控制的生长和对拟南芥等小植物种类的光谱监测。本文将呈现关于PCF植物栽培模块的设计和操作性能的数据,以及这种系统可用于支持低地球轨道和超出低地轨道的植物生长研究的程度。

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