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首页> 外文期刊>Palaeogeography, Palaeoclimatology, Palaeoecology: An International Journal for the Geo-Sciences >Spatial variation in bioavailable strontium isotope ratios (Sr-87/Sr-86) in Kenya and northern Tanzania: Implications for ecology, paleoanthropology, and archaeology
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Spatial variation in bioavailable strontium isotope ratios (Sr-87/Sr-86) in Kenya and northern Tanzania: Implications for ecology, paleoanthropology, and archaeology

机译:在肯尼亚和坦桑尼亚北部生物可利用锶同位素比率(SR-87 / SR-86)的空间变异:对生态学,古天花学和考古学的影响

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摘要

Eastern Africa is a key region for studying archaeological, palaeontological, and ecological movements. This region hosts critical developments in hominin and human evolution, the dispersal of food-producing populations across the continent, and some of the largest known contemporary mammalian migrations on the planet. Strontium isotope analysis of biominerals such as tooth enamel, eggshell, and other tissues in modern animals have been used to reconstruct migration, residential mobility, and provenience. The diverse geologies of Kenya and Tanzania, ranging from the Archaean Basement System rocks of the Tanzania Craton to the recent volcanics of rift valleys, make it a highly promising area for mobility and provenience studies using strontium isotope ratios (Sr-87/Sr-86). Nevertheless, the application of strontium isotope analysis to reconstruct migration and individual mobility has been limited in the region due to the lack of a map predicting biologically available (bioavailable) Sr-87/Sr-86. We present bioavailable Sr-87/Sr-86 data from a variety of modern and archaeological materials throughout Kenya and northern Tanzania. We show that Sr-87/Sr-86 of living organisms in the study area range from as low as 0.70439 for samples collected from Neogene volcanics to 0.72796 for samples collected from Precambrian Basement System rocks. We also present an Sr-87/Sr-86 map (isoscape) of Kenya and Tanzania developed using a machine-learning framework and a compilation of bioavailable Sr-87/Sr-86 data from Africa. This map provides the first predictions of bioavailable Sr-87/Sr-86 for East Africa, and represents a crucial resource for future work on ancient and modern animal and human mobility.
机译:东非是研究考古学、古生物学和生态运动的关键地区。该地区是人类和人类进化的关键发展地区,是生产食物的种群在整个大陆扩散的地区,也是地球上已知的当代最大哺乳动物迁徙的地区。现代动物的牙釉质、蛋壳和其他组织等生物矿物的锶同位素分析已被用于重建迁移、居住迁移和起源。肯尼亚和坦桑尼亚的各种地质条件,从坦桑尼亚克拉通的太古宙基底系统岩石到裂谷的近期火山岩,使其成为使用锶同位素比值(Sr-87/Sr-86)进行流动性和物源研究的非常有希望的区域。然而,由于缺乏预测生物可利用(生物可利用)Sr-87/Sr-86的地图,锶同位素分析在该地区重建迁移和个体迁移的应用受到限制。我们展示了来自肯尼亚和坦桑尼亚北部各种现代和考古材料的生物可用Sr-87/Sr-86数据。我们表明,研究区域内活生物体的Sr-87/Sr-86范围从从新近纪火山岩采集的样本低至0.70439,到从前寒武纪基底系统岩石采集的样本低至0.72796。我们还展示了使用机器学习框架开发的肯尼亚和坦桑尼亚的Sr-87/Sr-86地图(isoscape),以及来自非洲的生物可用Sr-87/Sr-86数据汇编。这张地图提供了东非生物可利用Sr-87/Sr-86的首次预测,并代表了未来研究古代和现代动物和人类流动性的关键资源。

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