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Elemental distribution in cephalopod statoliths: NanoSIMS provides new insights into nano-scale structure

机译:头足类脚石中的元素分布:NanoSIMS提供了有关纳米级结构的新见解

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摘要

We have applied the novel analytical method NanoSIMS to cephalopod statoliths for the first time in order to analyse their chemical microstructure, using a spatial resolution of 400 nm. This technique makes it possible to analyse in situ nano-scale chemical variations between increment layers. In statoliths of the boreoatlantic armhook squid Gonatus fabricii, we found distinct concentration patterns indicating a periodicity in strontium and sodium distributions. Sr and Na show a negative relation, both elements showing alternating patterns where the increments vary in width between approximately 1 and 5 μm. Results suggest, that aragonite deposited during the night is rich in Na and poor in Sr, while aragonite deposited during the day is rich in Sr and poor in Na. This study demonstrates the excellent suitability of NanoSIMS for nano-scale microchemical analyses of aragonite, providing new information on calcification processes and individual life histories. Possible future fields of application include not only cephalopod statoliths, but also virtually all biomineralized tissues in aquatic organisms like fish otoliths, gastropod statoliths, bivalve shells, foraminifers and corals.
机译:我们首次将新颖的分析方法NanoSIMS应用于头足类针石,以便使用400 nm的空间分辨率分析其化学微结构。这项技术可以分析增量层之间的原位纳米级化学变化。在北大西洋大西洋鱿鱼鱿鱼Gonatus fabricii的石笋中,我们发现了不同的浓度模式,表明锶和钠分布呈周期性。 Sr和Na显示负相关,两个元素都显示交替的图案,其中增量的宽度在大约1和5μm之间变化。结果表明,夜间沉积的文石富含Na而Sr较差,而白天沉积的文石富含Sr而Na较贫。这项研究证明了NanoSIMS对文石的纳米级微观化学分析的出色适用性,为钙化过程和个人生活史提供了新的信息。未来可能的应用领域不仅包括头足纲石器,而且实际上还包括水生物中的所有生物矿化组织,例如鱼耳石,腹足纲石器,双壳贝壳,有孔虫和珊瑚。

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