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Search for life on Mars in surface samples: Lessons from the 1999 Marsokhod rover field experiment

机译:在地表样品中搜索火星上的生命:1999年Marsokhod流浪者野外实验的经验教训

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The Marsokhod 1999 field experiment in the Mojave Desert included a simulation of a rover-based sample selection mission. As part of this mission, a test was made of strategies and analytical techniques for identifying past or present life in environments expected to be present on Mars. A combination of visual clues from high-resolution images and the detection of an important biomolecule (chlorophyll) with visibleear-infrared (NIR) spectroscopy led to the successful identification of a rock with evidence of cryptoendolithic organisms. The sample was identified in high-resolution images (3 times the resolution of the Imager for Mars Pathfinder camera) on the basis of a green tinge and textural information suggesting the presence of a thin, partially missing exfoliating layer revealing the organisms. The presence of chlorophyll bands in similar samples was observed in visible/NIR spectra of samples in the field and later confirmed in the laboratory using the same spectrometer. Raman spectroscopy in the laboratory, simulating a remote measurement technique, also detected evidence of carotenoids in samples from the same area. Laboratory analysis confirmed that the subsurface layer of the rock is inhabited by a community of coccoid Chroococcidioposis cyanobacteria. The identification of minerals in the held, including carbonates and serpentine, that are associated with aqueous processes was also demonstrated using the visible/NIR spectrometer. Other lessons learned that are applicable to future rover missions include the benefits of web-based programs for target selection and for daily mission planning and the need for involvement of the science team in optimizing image compression schemes based on the retention of visual signature characteristics. [References: 29]
机译:1999年在莫哈韦沙漠中进行的Marsokhod野外试验包括对基于流动站的样本选择任务的模拟。作为此任务的一部分,对策略和分析技术进行了测试,以识别预期在火星上存在的环境中的过去或现在的生活。来自高分辨率图像的视觉线索与使用可见/近红外(NIR)光谱检测重要的生物分子(叶绿素)的结合,成功地鉴定了具有隐内皮生物证据的岩石。根据绿色调和纹理信息(表明存在表明生物体的薄而部分缺失的去角质层),在高分辨率图像(火星探路者相机的Imager分辨率的3倍)中识别出了样品。在野外样品的可见/ NIR光谱中观察到相似样品中的叶绿素带存在,随后在实验室中使用相同的光谱仪进行了确认。实验室中的拉曼光谱法模拟了一种远程测量技术,还检测到了同一区域样品中的类胡萝卜素证据。实验室分析证实,岩石的地下层居住着球形球藻蓝藻细菌群落。还使用可见/近红外光谱仪证明了与水处理有关的所含矿物质的识别,包括碳酸盐和蛇纹石。其他可用于未来漫游者任务的经验教训包括基于网络的程序用于目标选择和日常任务计划的好处,以及需要科学团队参与以保留视觉特征为基础优化图像压缩方案的需求。 [参考:29]

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