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用于X射线和γ射线生物反应研究的实际剂量测定法。

Realistic dosimetry for studies on biological responses to X-rays and γ-rays.

作者信息

Shahmohammadi Beni Mehrdad, Krstic Dragana, Nikezic Dragoslav, Yu Kwan Ngok

机构信息

Department of Physics and Materials Science, City University of Hong Kong, Tat Chee Avenue, Kowloon Tong, Hong Kong.

Faculty of Science, University of Kragujevac, Serbia.

出版信息

J Radiat Res. 2017 Sep 1;58(5):729-736. doi: 10.1093/jrr/rrx019.

Abstract

A calibration coefficient R (= DA/DE) for photons was employed to characterize the photon dose in radiobiological experiments, where DA was the actual dose delivered to cells and DE was the dose recorded by an ionization chamber. R was determined using the Monte Carlo N-Particle version 5 (MCNP-5) code. Photons with (i) discrete energies, and (ii) continuous-energy distributions under different beam conditioning were considered. The four studied monoenergetic photons had energies E = 0.01, 0.1, 1 and 2 MeV. Photons with E = 0.01 MeV gave R values significantly different from unity, while those with E > 0.1 MeV gave R ≈ 1. Moreover, R decreased monotonically with increasing thickness of water medium above the cells for E = 0.01, 1 or 2 MeV due to energy loss of photons in the medium. For E = 0.1 MeV, the monotonic pattern no longer existed due to the dose delivered to the cells by electrons created through the photoelectric effect close to the medium-cell boundary. The continuous-energy distributions from the X-Rad 320 Biological Irradiator (voltage = 150 kV) were also studied under three different beam conditions: (a) F0: no filter used, (b) F1: using a 2 mm-thick Al filter, and (c) F2: using a filter made of (1.5 mm Al + 0.25 mm Cu + 0.75 mm Sn), giving mean output photon energies of 47.4, 57.3 and 102 keV, respectively. R varied from ~1.04 to ~1.28 for F0, from ~1.13 to ~1.21 for F1, and was very close to unity for F2.

摘要

在放射生物学实验中,使用光子校准系数R(= DA/DE)来表征光子剂量,其中DA是传递给细胞的实际剂量,DE是电离室记录的剂量。R使用蒙特卡罗N粒子版本5(MCNP - 5)代码确定。考虑了(i)具有离散能量的光子,以及(ii)在不同束流条件下的连续能量分布。研究的四种单能光子能量E = 0.01、0.1、1和2 MeV。能量为E = 0.01 MeV的光子给出的R值与1显著不同,而能量E > 0.1 MeV的光子给出的R≈1。此外,对于E = 0.01、1或2 MeV,由于光子在介质中的能量损失,R随着细胞上方水介质厚度的增加而单调下降。对于E = 0.1 MeV,由于通过靠近介质 - 细胞边界的光电效应产生的电子传递给细胞的剂量,单调模式不再存在。还研究了X - Rad 320生物辐照器(电压 = 150 kV)在三种不同束流条件下的连续能量分布:(a)F0:不使用滤波器,(b)F1:使用2 mm厚的Al滤波器,(c)F2:使用由(1.5 mm Al + 0.25 mm Cu + 0.75 mm Sn)制成的滤波器,平均输出光子能量分别为47.4、57.3和102 keV。F0的R从1.04变化到1.28,F1的R从1.13变化到1.21,F2的R非常接近1。

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