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首页> 外文期刊>Radiation measurements >Review of the dose-to-water energy dependence of alanine and lithium formate EPR dosimeters and LiF TL-dosimeters - Comparison with Monte Carlo simulations
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Review of the dose-to-water energy dependence of alanine and lithium formate EPR dosimeters and LiF TL-dosimeters - Comparison with Monte Carlo simulations

机译:丙氨酸和甲酸锂EPR剂量计和LiF TL剂量计的剂量-水能依赖性研究-与Monte Carlo模拟的比较

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The dose-to-water energy dependence may be defined as the dosimeter reading per absorbed dose to water for a given radiation beam relative to that for ~(60)Co γ rays. The purpose of this work was to review the literature on the dose-to-water energy dependence of lithium formate and alanine EPR dosimeters and LiF:Mg,Ti TL-dosimeters for clinical beam qualities and to compare the findings with Monte Carlo simulations. Monte Carlo simulations of the energy dependence of lithium formate and alanine EPR dosimeters and LiF:Mg,Ti TL-dosimeters were performed using the EGSnrc code. The following common clinical radiation qualities were applied: 4-24 MV photons, 4-20 MeV electrons, 50-200 kV_p X-rays, ~(192)Ir γ rays, and ~(60)Co γ rays as the reference. All dosimeter materials showed measured and Monte Carlo simulated energy responses around unity for MV photons, electrons and 192Ir γ rays, except LiF TL-dosimeters which showed an average underresponse of approximately 3% for electrons. For medium energy X-rays (50-200 kV_p), LiF displayed an increasing overresponse with decreasing energy to a maximum of about 40% for 50 kV_p X-rays. The two EPR dosimeter materials showed decreasing energy response with decreasing X-ray energy, but lithium formate was less dependent on energy than alanine. Comparisons between Monte Carlo simulations and measurements revealed some deviations for medium energy X-rays, which may be due to LET-effects caused by low energy electrons. In conclusion, lithium formate is the dosimeter material with the lowest energy dependence over a wide range of clinically relevant radiation qualities, which clearly is advantageous for accurate dosimetry.
机译:剂量对水能量的依赖性可以定义为相对于〜(60)Coγ射线,给定辐射束的每吸收水剂量的剂量计读数。这项工作的目的是审查有关甲酸锂和丙氨酸EPR剂量计和LiF:Mg,Ti TL剂量计对临床光束质量的剂量-水能依赖性的文献,并将结果与​​Monte Carlo模拟进行比较。使用EGSnrc代码对甲酸锂和丙氨酸EPR剂量计以及LiF:Mg,Ti TL剂量计的能量依赖性进行了蒙特卡罗模拟。应用了以下常见的临床放射质量:4-24 MV光子,4-20 MeV电子,50-200 kV_p X射线,〜(192)Irγ射线和〜(60)Coγ射线作为参考。除LiF TL剂量计对电子的平均欠响应约为3%以外,所有的剂量计材料均显示了对MV光子,电子和192Irγ射线的测量和Monte Carlo模拟的能量响应在1附近。对于中能量X射线(50-200 kV_p),对于50 kV_p X射线,LiF显示出越来越大的过响应,能量降低到最大约40%。两种EPR剂量计材料均显示出随着X射线能量减少而能量响应降低,但是甲酸丙氨酸锂对能量的依赖性低于丙氨酸。蒙特卡罗模拟和测量之间的比较表明,中能X射线存在一些偏差,这可能是由于低能电子引起的LET效应所致。总之,甲酸锂是在广泛的临床相关辐射质量范围内具有最低能量依赖性的剂量计材料,这显然对于精确的剂量测定是有利的。

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