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In vivo X-ray fluorescence of lead in bone: review and current issues.

机译:体内铅在体内的X射线荧光:综述和当前问题。

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摘要

Bone lead measurements can assess long-term lead dosimetry because the residence time of lead in bone is long. Bone lead measurements thus complement blood and plasma lead measurements, which reflect more short-term exposure. Although the noninvasive, in vivo measurement of lead in bone by X-ray fluorescence (XRF) has been under development since the 1970s, its use is still largely confined to research institutions. There are three principal methods used that vary both in the how lead X-rays are fluoresced and in which lead X-rays are fluoresced. Several groups have reported the independent development of in vivo measurement systems, the majority adopting the 109Cd K XRF method because of its advantages: a robust measurement, a lower detection limit (compared to 57Co K XRF), and a lower effective (radiation) dose (compared to L XRF) when calculated according to the most recent guidelines. These advantages, and the subsequent widespread adoption of the 109Cd method, are primarily consequences of the physics principles of the technique. This paper presents an explanation of the principles of XRF, a description of the practical measurement systems, a review of the human bone lead studies performed to date; and a discussion of some issues surrounding future application of the methods.
机译:骨铅测量可以评估长期的铅剂量,因为铅在骨骼中的停留时间很长。因此,骨铅测量值可补充血液和血浆铅测量值,这反映了更多的短期暴露。尽管自1970年代以来一直在研究通过X射线荧光(XRF)进行的骨中铅的无创体内测量,但其使用仍主要限于研究机构。所使用的三种主要方法在X射线荧光发出荧光的方式和X射线荧光发出荧光的方式上都有所不同。几组报告了体内测量系统的独立开发,由于其优点,大多数采用109Cd K XRF方法:测量稳定,检测限较低(与57Co K XRF相比)和有效(放射)剂量较低(与L XRF相比)根据最新指南进行计算。这些优点以及后来广泛采用的109Cd方法,主要是该技术的物理原理的结果。本文介绍了XRF的原理,实际测量系统的描述,迄今为止对人骨铅研究的回顾;以及有关该方法未来应用的一些问题的讨论。

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