Ferreira Carlos V G, Piedade Jennifer S, Prado Max R D, Benavente Jhonny, Mendes Bruno M, Paixão Lucas, Fonseca Telma C F
Universidade Federal de Minas Gerais, Escola de Engenharia - Departamento de Engenharia Nuclear, Programa de Pós-graduação em Ciências e Técnicas Nucleares, Av. Pres. Antônio Carlos 6627, Belo Horizonte MG, Brazil.
Universidade Federal de Minas Gerais, Faculdade de Medicina - Departamento de Anatomia e Imagem, Av. Prof. Alfredo Balena 190, Belo Horizonte, MG, Brazil.
Appl Radiat Isot. 2023 Apr;194:110685. doi: 10.1016/j.apradiso.2023.110685. Epub 2023 Feb 4.
Individual monitoring can provide an estimate of the radioactivity present in the body of the exposed individuals. Periodic monitoring of occupationally exposed individuals is of great importance in case of accidental incorporation. Computational phantoms and Monte Carlo codes are often used to complement the calibration method of counting systems in internal dosimetry. Here, counting efficiency (CE) factors for a WBC system were calculated using MC simulations. The WBC system with a NaI(Tl) detector and the BOMAB phantom was modeled using three MC codes. After validation, the models were used to obtain CE values for a wide range of energies, and a CE curve was generated for the WBC system. To estimate the effects of anatomical differences on the measurement process, two anthropomorphic voxel phantoms were modeled using the VMC code. For the detector position with the highest CE value, the differences when comparing BOMAB results with the MaMP and Yale results were (-1 ± 6)% and (-1 ± 3)%, respectively. The results confirm that the use of the BOMAB phantom is a good approach for the calibration of the whole-body counter system. Measurements should be made at detector position with the highest CE values, and it is recommended to use the mean Monte Carlo CE values calculated in this work.
个体监测可以提供受照个体体内放射性的估计值。在发生意外摄入的情况下,对职业受照个体进行定期监测非常重要。计算体模和蒙特卡罗代码常用于补充内照射剂量学中计数系统的校准方法。在此,使用蒙特卡罗模拟计算了白细胞计数系统的计数效率(CE)因子。使用三种蒙特卡罗代码对带有碘化钠(铊)探测器的白细胞计数系统和BOMAB体模进行了建模。经过验证后,这些模型用于获得广泛能量范围内的CE值,并生成了白细胞计数系统的CE曲线。为了估计解剖学差异对测量过程的影响,使用VMC代码对两个人体体素体模进行了建模。对于CE值最高的探测器位置,将BOMAB结果与MaMP和耶鲁结果进行比较时的差异分别为(-1±6)%和(-1±3)%。结果证实,使用BOMAB体模是校准全身计数系统的一种好方法。应在CE值最高的探测器位置进行测量,建议使用本工作中计算的蒙特卡罗CE平均值。