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The mapping and differentiation of biological and environmental elemental signatures in the fossil remains of a 50 million year old bird

机译:生物和环境元素特征的映射和区分在一只5000万年前的鸟类的化石遗骸中

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摘要

The preservation of fossils reflects the interplay of inorganic and organic chemical processes, which should be clearly differentiated to make interpretations about the biology of extinct organisms. A new coliiformes bird (mouse bird) from the [similar]50 million year old Green River Formation (Wyoming, USA) has here been analysed using synchrotron X-ray fluorescence and environmental scanning electron microscopy with an attached X-ray energy dispersive system (ESEM-EDS). The concentration and distribution of 16 elements (Si, P, S, Cl, K, Ca, Ti, Mg, Fe, Ni, Cu, Zn, As, Br, Ba, Hg) has been mapped for individual points on the sample. S, Cu and Zn map distinctly within visibly preserved feathers and X-ray Absorption Spectroscopy (XAS) shows that S and Cu within the feathers are organically bound in a similar manner to modern feathers. The morphological preservation of the feathers, on both macro- and microscopic scales, is variable throughout the fossil and the differences in the lateral microfacies have resulted in a morphological preservation gradient. This study clearly differentiates endogenous organic remains from those representing exogenous overprinted geochemical precipitates and illustrates the chemical complexity of the overall taphonomic process.
机译:化石的保存反映了无机和有机化学过程的相互作用,应该对它们加以区分,以便对灭绝生物的生物学做出解释。本文使用同步加速器X射线荧光和环境扫描电子显微镜以及附有X射线能量分散系统(约有5,000万年历史的绿河组(美国怀俄明州))分析了一种新的大肠菌类鸟类(小鼠鸟类)( ESEM-EDS)。绘制了样品中各个点的16种元素(Si,P,S,Cl,K,Ca,Ti,Mg,Fe,Ni,Cu,Zn,As,Br,Ba,Hg)的浓度和分布。 S,Cu和Zn在可见的保留羽毛中的分布明显不同,X射线吸收光谱(XAS)显示,羽毛中的S和Cu以与现代羽毛类似的方式有机结合。羽毛的宏观和微观尺度形态保存在整个化石中是变化的,侧向微相的差异导致了形态保存梯度。这项研究清楚地将内源性有机物残留物与代表外源性叠印地球化学沉淀物的有机物残留物区分开来,并说明了整个总体过程的化学复杂性。

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