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Development of a transportable neutron activation analysis system to quantify manganese in bone in vivo: Feasibility and methodology

机译:开发可移动的中子活化分析系统以定量体内骨骼中的锰:可行性和方法学

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摘要

This study was conducted to investigate the methodology and feasibility of developing a transportable neutron activation analysis (NAA) system to quantify manganese (Mn) in bone using a portable deuterium-deuterium (DD) neutron generator as the neutron source. Since a DD neutron generator was not available in our laboratory, a deuterium-tritium (DT) neutron generator was used to obtain experimental data and validate the results from Monte Carlo (MC) simulations. After validation, MC simulations using a DD generator as the neutron source were then conducted. Different types of moderators and reflectors were simulated, and the optimal thicknesses for the moderator and reflector were determined. To estimate the detection limit (DL) of the system, and to observe the interference of the magnesium (Mg) γ line at 844 keV to the Mn γ line at 847 keV, three hand phantoms with Mn concentrations of 30 parts per million (ppm), 150 ppm, and 500 ppm were made and irradiated by the DT generator system. The Mn signals in these phantoms were then measured using a 50% high-efficiency high-purity germanium (HPGe) detector. The DL was calculated to be about 4.4 ppm for the chosen irradiation, decay, and measurement time. This was calculated to be equivalent to a DL of about 3.3 ppm for the DD generator system. To achieve this DL with one 50% high-efficiency HPGe detector, the dose to the hand was simulated to be about 37 mSv, with the total body equivalent dose being about 23μSv. In conclusion, it is feasible to develop a transportable NAA system to quantify Mn in bone in vivo with an acceptable radiation exposure to the subject.
机译:进行这项研究的目的是研究使用便携式氘-氘(DD)中子发生器作为中子源的可移动中子活化分析(NAA)系统的开发方法和可行性,以量化骨骼中的锰(Mn)。由于在我们的实验室中没有DD中子发生器,因此使用氘-(DT)中子发生器来获得实验数据并验证Monte Carlo(MC)模拟的结果。验证后,然后使用DD发生器作为中子源进行MC模拟。模拟了不同类型的减速器和反射器,并确定了减速器和反射器的最佳厚度。为了估算系统的检出限(DL),并观察844 keV的镁(Mg)γ线对847 keV的Mnγ线的干扰,三只手模的Mn浓度为百万分之30(ppm) )分别制成150 ppm和500 ppm,并用DT发生器系统照射。然后使用50%高效高纯锗(HPGe)检测器测量这些体模中的Mn信号。对于所选的辐照,衰减和测量时间,DL计算得出约为4.4 ppm。对于DD发生器系统,这相当于DL约为3.3 ppm。为了使用一个50%的高效HPGe检测器实现此DL,模拟的手部剂量约为37 mSv,全身等效剂量约为23μSv。总而言之,开发一种可运输的NAA系统以对受试者体内可接受的放射线进行体内Mn定量,是可行的。

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