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Laser-Stimulated Fluorescence in Paleontology

机译:激光激发荧光在古生物学中的应用

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摘要

Fluorescence using ultraviolet (UV) light has seen increased use as a tool in paleontology over the last decade. Laser-stimulated fluorescence (LSF) is a next generation technique that is emerging as a way to fluoresce paleontological specimens that remain dark under typical UV. A laser’s ability to concentrate very high flux rates both at the macroscopic and microscopic levels results in specimens fluorescing in ways a standard UV bulb cannot induce. Presented here are five paleontological case histories that illustrate the technique across a broad range of specimens and scales. Novel uses such as back-lighting opaque specimens to reveal detail and detection of specimens completely obscured by matrix are highlighted in these examples. The recent cost reductions in medium-power short wavelength lasers and use of standard photographic filters has now made this technique widely accessible to researchers. This technology has the potential to automate multiple aspects of paleontology, including preparation and sorting of microfossils. This represents a highly cost-effective way to address paleontology's preparatory bottleneck.
机译:在过去的十年中,使用紫外线(UV)的荧光已越来越多地用作古生物学的工具。激光激发荧光(LSF)是下一代技术,它是一种使古生物学标本发荧光的方法,该标本在典型的紫外线下仍保持深色。激光能够在宏观和微观水平上集中非常高的通量率,从而使标本发荧光,而标准UV灯泡无法诱发这种情况。这里介绍的是五种古生物学案例历史,它们在广泛的标本和规模中说明了该技术。在这些示例中,着重介绍了新颖的用途,例如通过对不透明的样本进行背光照明来揭示细节,并检测完全被矩阵遮盖的样本。最近,中功率短波长激光器的成本降低以及标准照相滤光片的使用,使这项技术对研究人员而言更为广泛。该技术具有使古生物学的多个方面自动化的潜力,包括微化石的制备和分选。这是解决古生物学准备瓶颈的一种极具成本效益的方法。

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