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Nondestructive in situ cellular-scale mapping of elemental abundances including organic carbon in permineralized fossils

机译:的无损原位细胞比例尺成像 矿化元素中的元素丰度包括有机碳 化石

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摘要

The electron microprobe allows elemental abundances to be mapped at the μm scale, but until now high resolution mapping of light elements has been challenging. Modifications of electron microprobe procedure permit fine-scale mapping of carbon. When applied to permineralized fossils, this technique allows simultaneous mapping of organic material, major matrix-forming elements, and trace elements with μm-scale resolution. The resulting data make it possible to test taphonomic hypotheses for the formation of anatomically preserved silicified fossils, including the role of trace elements in the initiation of silica precipitation and in the prevention of organic degradation. The technique allows one to understand the localization of preserved organic matter before undertaking destructive chemical analyses and, because it is nondestructive, offers a potentially important tool for astrobiological investigations of samples returned from Mars or other solar system bodies.
机译:电子微探针允许以微米级标绘元素丰度,但是直到现在,轻元素的高分辨率标绘一直是一项挑战。电子微探针程序的修改允许碳的精细比例映射。当应用于矿物化石时,该技术可以同时绘制有机材料,主要基质形成元素和微米级分辨率的痕量元素的图。所得数据使得有可能测试关于拓扑保存的硅化石的形成的方言假说,包括微量元素在引发二氧化硅沉淀和防止有机降解方面的作用。该技术使人们能够在进行破坏性化学分析之前了解保留的有机物的定位,并且由于它是非破坏性的,因此它为从火星或其他太阳系物体返回的样品进行天体生物学研究提供了潜在的重要工具。

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