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使用国际辐射防护委员会(ICRP)男性胸部体素模型的蒙特卡罗模拟评估低能光子发射体肺部活度测量中的不确定性。

Assessment of uncertainties in the lung activity measurement of low-energy photon emitters using Monte Carlo simulation of ICRP male thorax voxel phantom.

作者信息

Nadar M Y, Akar D K, Rao D D, Kulkarni M S, Pradeepkumar K S

机构信息

Internal Dosimetry Section, Radiation Safety Systems Division, Bhabha Atomic Research Centre, Mumbai 400085, India

Internal Dosimetry Section, Radiation Safety Systems Division, Bhabha Atomic Research Centre, Mumbai 400085, India.

出版信息

Radiat Prot Dosimetry. 2015 Dec;167(4):461-71. doi: 10.1093/rpd/ncu349. Epub 2014 Dec 2.

Abstract

Assessment of intake due to long-lived actinides by inhalation pathway is carried out by lung monitoring of the radiation workers inside totally shielded steel room using sensitive detection systems such as Phoswich and an array of HPGe detectors. In this paper, uncertainties in the lung activity estimation due to positional errors, chest wall thickness (CWT) and detector background variation are evaluated. First, calibration factors (CFs) of Phoswich and an array of three HPGe detectors are estimated by incorporating ICRP male thorax voxel phantom and detectors in Monte Carlo code 'FLUKA'. CFs are estimated for the uniform source distribution in lungs of the phantom for various photon energies. The variation in the CFs for positional errors of ±0.5, 1 and 1.5 cm in horizontal and vertical direction along the chest are studied. The positional errors are also evaluated by resizing the voxel phantom. Combined uncertainties are estimated at different energies using the uncertainties due to CWT, detector positioning, detector background variation of an uncontaminated adult person and counting statistics in the form of scattering factors (SFs). SFs are found to decrease with increase in energy. With HPGe array, highest SF of 1.84 is found at 18 keV. It reduces to 1.36 at 238 keV.

摘要

通过吸入途径对长寿命锕系元素摄入量的评估,是在完全屏蔽的钢室内,利用诸如磷光体探测器和一组高纯锗探测器等灵敏检测系统,对辐射工作人员的肺部进行监测来开展的。本文评估了因位置误差、胸壁厚度(CWT)和探测器本底变化而导致的肺部活度估计中的不确定性。首先,通过在蒙特卡罗代码“FLUKA”中纳入国际辐射防护委员会(ICRP)男性胸部体素模型和探测器,估算了磷光体探测器和一组三个高纯锗探测器的校准因子(CFs)。针对模型肺部中各种光子能量下的均匀源分布估算了CFs。研究了沿胸部水平和垂直方向±0.5、1和1.5厘米位置误差时CFs的变化。还通过调整体素模型大小来评估位置误差。利用因CWT、探测器定位、未受污染成年人的探测器本底变化以及以散射因子(SFs)形式表示的计数统计所导致的不确定性,估算了不同能量下的综合不确定性。发现SFs随能量增加而降低。使用高纯锗探测器阵列时,在18 keV处发现最高SF为1.84。在238 keV时降至1.36。

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