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Determining Residence Patterns of Rainbow Trout Using Laser Ablation Inductively Coupled Plasma Mass Spectrometry (LA-ICP-MS) Analysis of Selenium in Otoliths

机译:激光消融电感耦合等离子体质谱法(LA-ICP-MS)测定耳石中硒的含量,确定虹鳟的居留模式

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摘要

Toxicological studies are often hampered by concerns of fish residency in the industrial effluent being evaluated. Contaminants in muscle or visceral tissue are useful indicators of recent exposure, but depuration, metabolic transformation, and tissue recompartmentalization of contaminants makes their use as temporal markers tenuous. Otoliths are metabolically stable and can provide temporal resolution for exposure to some elements that are incorporated into their calcified structure, including the divalent cations Sr, Zn, and Mn. Here we provide the first determinations of selenium, an anion in biological systems, in the Otoliths of rainbow trout captured from a site receiving runoff with elevated selenium from a coal mine operation. Concentrations of selenium in annual growth zones of Otoliths suggest that fish from the mine-impacted system are recent immigrants from nearby reference streams not receiving selenium-bearing effluent.
机译:毒理学研究常常因担心鱼类在所评估的工业废水中的驻留性而受到阻碍。肌肉或内脏组织中的污染物是近期暴露的有用指标,但是污染物的净化,代谢转化和组织重新分区化使它们作为时间标记的作用很弱。耳石代谢稳定,可以为暴露于钙化结构中掺入的某些元素(包括二价阳离子Sr,Zn和Mn)提供时间分辨率。在这里,我们提供了硒的最初测定方法,硒是生物系统中的阴离子,是从煤矿运营中因硒含量升高而从径流中捕获的虹鳟鱼耳石中捕获的。耳石的年生长区中硒的浓度表明,受地雷影响系统的鱼是来自附近参考水流的近期移民,没有接收含硒的废水。

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