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首页> 外文期刊>Journal of Archaeological Science >The fish of Lake Titicaca: implications for archaeology and changing ecology through stable isotope analysis
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The fish of Lake Titicaca: implications for archaeology and changing ecology through stable isotope analysis

机译:的喀喀湖中的鱼:通过稳定同位素分析对考古学和生态变化的影响

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摘要

Research on past human diets in the southern Lake Titicaca Basin has directed us to investigate the carbon and nitrogen stable isotopes of an important dietary element, fish. By completing a range of analyses on modern and archaeological fish remains, we contribute to two related issues regarding the application of stable isotope analysis of archaeological fish remains and in turn their place within human diet. The first issue is the potential carbon and nitrogen isotope values of prehistoric fish (and how these would impact human dietary isotopic data), and the second is the observed changes in the fish isotopes through time. Out of this work we provide quantitative isotope relationships between fish tissues with and without lipid extraction, and a qualitative analysis of the isotopic relationships between fish tissues, allowing archaeologists to understand these relationships and how these values can be applied in future research. We test a mathematical lipid normalization equation to examine whether future researchers will need to perform lipid extraction procedures for Lake Titicaca fish. We also analyze a number of aquatic plants to better understand the range of isotopic signatures of the Lake Titicaca ecosystem. We use these data to better understand prehistoric human diet and the role that fish may have played in the past as well as potential changes in local lake ecology through time.
机译:喀喀湖南部盆地过去人类饮食的研究指导我们研究重要饮食元素鱼的碳和氮稳定同位素。通过完成对现代和考古鱼遗体的一系列分析,我们为考古鱼遗体的稳定同位素分析的应用以及它们在人类饮食中的地位提出了两个相关的问题。第一个问题是史前鱼类的潜在碳和氮同位素值(以及它们如何影响人类饮食同位素数据),第二个问题是随时间变化所观察到的鱼同位素变化。通过这项工作,我们提供了在有或没有脂质提取的情况下鱼组织之间的定量同位素关系,并对鱼组织之间的同位素关系进行了定性分析,使考古学家能够理解这些关系以及如何将这些值应用于未来的研究。我们测试了数学脂质归一化方程,以检查未来的研究人员是否需要对喀喀湖鱼进行脂质提取程序。我们还分析了许多水生植物,以更好地了解喀喀湖生态系统的同位素特征。我们使用这些数据更好地了解史前人类的饮食以及鱼类过去可能扮演的角色,以及随着时间的流逝当地湖泊生态的潜在变化。

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