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首页> 外文期刊>Journal of the Royal Society Interface >Incremental distribution of strontium and zinc in great ape and fossil hominin cementum using synchrotron X-ray fluorescence mapping
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Incremental distribution of strontium and zinc in great ape and fossil hominin cementum using synchrotron X-ray fluorescence mapping

机译:使用Synchrotron X射线荧光测绘的大猿和化石原素Cementum中锶和锌的增量分布

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摘要

Cementum and the incremental markings it contains have been widely studied as a means of ageing animals and retrieving information about diet and nutrition. The distribution of trace elements in great ape and fossil hominin cementum has not been studied previously. Synchrotron X-ray fluorescence (SXRF) enables rapid scanning of large tissue areas with high resolution of elemental distributions. First, we used SXRF to map calcium, phosphorus, strontium and zinc distributions in great ape dentine and cementum. At higher resolution, we compared zinc and strontium distributions in cellular and acellular cementum in regions where clear incremental markings were expressed. We then mapped trace element distributions in fossil hominin dentine and cementum from the 1.55-1.65 million year old site of Koobi Fora, Kenya. Zinc, in particular, is a precise marker of cementum increments in great apes, and is retained in fossil hominin cementum, but does not correspond well with the more diffuse fluctuations observed in strontium distribution. Cementum is unusual among mineralized tissues in retaining so much zinc. This is known to reduce the acid solubility of hydroxyapatite and so may confer resistance to resorption by osteoclasts in the dynamic remodelling environment of the periodontal ligament and alveolar bone.
机译:Cementum和它含有的增量标记已被广泛研究作为老化动物的手段,以及检索有关饮食和营养的信息。尚未研究大猿和化石母素水泥中微量元素的分布尚未研究。同步X射线荧光(SXRF)能够快速扫描高分子分布的大型组织区域。首先,我们使用SXRF将钙,磷,锶和锌分布映射到大猿牙本质和水泥中。在较高的分辨率下,我们在表达澄清增量标记的区域中比较了细胞和细粒中的锌和锶分布。然后,我们在肯尼亚的1.55-165万岁时历史旧网站上映射了化石原蛋白牙本质和水泥的微量元素分布。特别是锌,是大猿的豆类增量的精确标记,并保留在化石母细胞液中,但与锶分布中观察到的漫反射波动不良好。在保留如此多的锌中的矿化组织中,豆类在粘液中是不寻常的。已知将羟基磷灰石的酸溶解度降低,因此可以通过牙周韧带和肺泡骨的动态重塑环境中的破骨细胞赋予耐骨质体的吸收抗性。

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