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Customized compact neutron activation analysis system to quantify manganese (Mn) in bone in vivo

机译:定制的紧凑型中子激活分析系统在体内量化骨锰(Mn)

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Objective: In the US alone, millions of workers, including over 300 000 welders, are at high risk of occupational manganese (Mn) exposure. Those who have been chronically exposed to excessive amount of Mn can develop severe neurological disorders similar, but not identical, to the idiopathic Parkinson's disease. One challenge of identifing the health effects of Mn exposure is to find a reliable biomarker for exposure assessment, especially for long-term cumulative exposure. Approach: Mn's long biological half-life as well as its relatively high concentration in bone makes bone Mn (BnMn) a potentially valuable biomarker for Mn exposure. Our group has been working on the development of a deuteriumdeuterium (D-D)-based neutron generator to quantify Mn in bone in vivo. Main results and significance: In this paper, we report the latest advancements in our system. With a customized hand irradiation assembly, a fully characterized high purity germanium (HPGe) detector system, and an acceptable hand dose of 36 mSv, a detection limit of 0.64 mu g Mn/g bone (ppm) has been achieved.
机译:目的:在美国单独,数百万工人,包括300 000多个焊工,具有高风险的职业锰(MN)曝光。那些已经长期暴露于过量的Mn的人可以发育严重的神经系统疾病,而不是特发性帕金森病的疾病。识别Mn暴露的健康效果的一个挑战是寻找可靠的生物标志物,用于接触评估,特别是对于长期累积暴露。方法:Mn的长生物半衰期以及其在骨中相对高的浓度使骨Mn(BNMN)成为Mn暴露的潜在有价值的生物标志物。本集团一直在致力于开发氘化氘(D-D)的中子发生器,以定量体内骨中的Mn。主要成果和意义:在本文中,我们报告了我们系统的最新进展。通过定制的手照射组件,已经实现了完全表征的高纯度锗(HPGE)探测器系统,以及36msv的可接受的手剂量,已经实现了0.64μgmn/ g骨(ppm)的检测限。

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