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VIBRATIONAL SPECTROSCOPY OF FOSSILS

机译:化石的振动光谱

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摘要

Over the last two decades, there has an been increasing interest in applying vibrational spectroscopy in palaeontological research. For example, this chemical analytical technique has been used to elucidate the chemical composition of a wide variety of fossils, including Archaean putative microfossils, stromatolites, chitinozoans, acritarchs, fossil algae, fossil plant cuticles, putative fossil arthropods, conodonts, scolecodonts and dinosaur bones. The insights provided by these data have been equally far ranging: to taxonomically identify a fossil, to determine biogenicity of a putative fossil, to identify preserved biologically synthesized compounds and to elucidate the preservational mechanisms of fossil material. Vibrational spectroscopy has clearly been a useful tool for investigating various palaeontological problems. However, it is also a tool that has been misapplied and misinterpreted, and thus, this review is dedicated to providing a palaeontologist who is new to vibrational spectroscopy with a basic understanding of these techniques, and the types of chemical information that can be obtained. Two example applications of these techniques are discussed in detail, one looking into fossil palynomorph taxonomy and other into the enigmatic Burgess Shale-type preservation.
机译:在过去的二十年中,在古生物学研究中应用振动光谱学的兴趣日益浓厚。例如,这种化学分析技术已被用于阐明各种化石的化学成分,包括古生的推定微化石,叠层石,甲壳类动物,速生动物,化石藻类,化石植物角质层,推定的化石节肢动物,牙形石,鞘翅目和恐龙骨骼。这些数据提供的洞察力同样广泛:分类学上鉴定化石,确定假定的化石的生物成因,鉴定保存的生物合成化合物以及阐明化石材料的保存机制。振动光谱法显然是研究各种古生物学问题的有用工具。但是,它也是一种被误用和误解的工具,因此,本综述致力于为振动光谱新手提供的古生物学家,对这些技术以及可获得的化学信息的类型有基本的了解。详细讨论了这些技术的两个示例应用,一个研究化石类古生物分类学,另一个研究神秘的Burgess页岩型保存。

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