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Microtaphonomy in archaeological sites: The use of soil micromorphology to better understand bone taphonomy in archaeological contexts

机译:考古遗址中的微观形态学:利用土壤微观形态更好地了解考古环境中的骨拓扑学

摘要

In archaeozoological studies, taphonomic analyses have focused largely on identification of chemical and mechanical changes of the bones recovered during excavation. The quantification of bone remains is usually made using the number of remains (NR). One of the major drawbacks in the use of the NR method is that it does not take into account the variability in size of faunal remains, from large bones to microscopic fragments. In archaeological sites where no macroscopic bone is preserved due to adverse physico-chemical conditions (e.g. high pH), micromorphology can be used to detect the presence of bones and other animal remains. In addition, microscopic observations provide information on the pre and post-depositional alteration of faunal remains, and allow for a semi-quantitative assessment of microscopic bone fragments. In this sense, micromorphology can be used in support of archaeo-taphonomic studies, which have traditionally overlooked microscopic animal remains. This paper presents some applications of the use of micromorphology to understand bone taphonomy at different archaeological open-air sites, including: (1) a shell midden from Tierra del Fuego, (2) a Brazilian shell mound (sambaqui), (3) an Iberian Middle Palaeolithic site and (4) a Mesolithic campsite in northern Scotland.
机译:在考古学研究中,分子工程学分析主要集中在确定挖掘过程中回收的骨头的化学和机械变化方面。骨残余物的定量通常使用残余物数量(NR)进行。使用NR方法的主要缺点之一是,它没有考虑到动物遗骸的大小(从大骨头到微观碎片)的可变性。在由于不利的物理化学条件(例如高pH)而无法保留宏观骨骼的考古现场,可以使用微观形态来检测骨骼和其他动物遗骸的存在。此外,显微观察可提供有关动物残骸沉积前后变化的信息,并可对显微骨碎片进行半定量评估。从这个意义上讲,微观形态学可以用来支持考古学研究,而考古学研究通常忽略了微观动物遗骸。本文介绍了使用微形态学来了解不同考古露天场所的骨拓扑学的一些应用,包括:(1)来自火地岛的贝壳,(2)巴西贝壳丘(sambaqui),(3)伊比利亚中古旧石器遗址和(4)苏格兰北部的中石器营地。

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