首页> 外文期刊>Journal of trace elements in medicine and biology: Organ of the Society for Minerals and Trace Elements (GMS) >Isobaric dilution analysis as a calibration tool for long lived radionuclides in ICP-MS
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Isobaric dilution analysis as a calibration tool for long lived radionuclides in ICP-MS

机译:ISObaric稀释分析作为ICP-MS中长寿命放射性核素的校准工具

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摘要

A novel quantification method named isobaric dilution analysis (IBDA) is introduced for internal calibration using inductively coupled plasma mass spectrometry (ICP-MS). Unlike isotope dilution analysis (IDA), where a sample to be analysed for a target analyte element is spiked with an isotopically enriched solution of the same element, IBDA uses the fact that conventional mass analysers cannot distinguish between two isobaric isotopes of different elements. Therefore, in IBDA, the sample with the element of interest is spiked with a solution of a different element, which shares at least one isobaric isotope and shows similar chemical properties resulting in a similar response. This method offers a less expensive alternative to conventional IDA especially for long-lived radionuclides of elements for which a spiking element that fulfils the above mentioned requirements can be provided. In addition, IBDA offers the advantage of making certain metastable, sometimes monoisotopic elements accessible to internal calibration using a strategy analogous to IDA. One of the elements accessible by the new calibration strategy is technetium (Tc), which suffers from a lack of standards due to safety requirements associated with its radioactivity. In this work, the principle of IBDA is first demonstrated for a certified gadolinium standard, which was diluted with a dysprosium spike exhibiting an isobaric isotope with m/z 160. The results obtained by IBDA were compared with those obtained by a conventional IDA. The concept of IBDA was subsequently used for the determination of Tc-99 in a contrast agent. Since no certified Tc standards are available, the response of Tc-99 was interpolated allowing accurate determinations with an uncertainty of 1%. (C) 2017 Elsevier GmbH. All rights reserved.
机译:使用电感耦合等离子体质谱(ICP-MS)引入了一种名为Isobaric稀释分析(IBDA)的新型定量方法。与同位素稀释分析(IDA)不同,其中用同位素富集的相同元素的溶液分析待分析的样品,IBDA使用传统质量分析仪不能区分不同元素的两个等异质同位素的事实。因此,在IBDA中,掺入具有感兴趣元素的样品用不同元素的溶液掺入,其共用至少一种等异质同位素并显示出类似的化学性质,从而导致类似的反应。该方法提供了常规IDA的较便宜的替代方案,特别是对于能够提供满足上述要求的尖刺元件的元素的长寿命放射性核苷酸。此外,IBDA提供了一种使用类似于IDA的策略来制作某些亚稳态的优势,有时可以使用内部校准。新校准策略可访问的元素之一是Technetium(TC),由于与其放射性相关的安全要求,缺乏标准。在这项工作中,首先对IBDA的原理进行了证明的钆标准,该标准用镝尖峰稀释,其具有M / Z 160的同位素同位素。将通过IBDA获得的结果与通过常规IDA获得的结果进行比较。随后使用IBDA的概念用于测定造影剂中的TC-99。由于没有经过认证的TC标准,因此TC-99的响应被插入,允许准确的测定,不确定为1%。 (c)2017 Elsevier GmbH。版权所有。

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