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首页> 外文期刊>Iranian journal of radiation research : >Determination of the attenuation coefficient for megavoltage photons in the water phantom
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Determination of the attenuation coefficient for megavoltage photons in the water phantom

机译:水体模中兆电压光子衰减系数的确定

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Background: Attenuation coefficient (m) plays an important role in calculations of treatment planning systems, as well as determination of dose distributions in external beam therapy, dosimetry, protection, phantom materials and industry. So, its exact measurement or calculation is very important. The aim of this study was to evaluate the u in different points in the water phantom analytically as a formula, in addition to derive and parameterize it with dosimetry measurements data results. Materials and Methods: To find the attenuation coefficients at each point along the central axis of the beam in the phantom for every size of the fields, the first mathematical approach was performed for derivation of |is from percentage depth dose (PDD) formula. Then by dosimetry for different fields in different depths of water phantom, one can parameterize the obtained formula for mu in any field and depth. Results: By comparing the mathematical and dosimetry results, the parameters of the u-expression were derived in terms of the dimension of square field in different depths. From this formula one can find the mu for any field in different depths for two energies of the Varian 2100CD linear accelerator, 6, 18MV with the statistical coefficient of determination of R~2>0.98. Conclusion: The measurement of the mu in each field size and depth has some technical problems, but one can easily measure the u for every point of central axis of the beams in any field size.
机译:背景:衰减系数(m)在治疗计划系统的计算以及确定外部束治疗,剂量测定,保护,幻象材料和工业中的剂量分布方面起着重要作用。因此,其精确的度量或计算非常重要。这项研究的目的是作为公式,以分析方式评估水体模中不同点的u,并用剂量测定法测量数据结果导出和参数化u。材料和方法:对于每种尺寸的场,要找到沿幻影光束中心轴在每个点处的衰减系数,执行了第一种数学方法,即从百分比深度剂量(PDD)公式中得出| is。然后,通过对水体模型不同深度的不同场进行剂量测定,可以对所获得的mu在任何场和深度的公式进行参数化。结果:通过比较数学和剂量学结果,根据不同深度的正方形场的尺寸导出了u表达式的参数。从这个公式中,可以找到Varian 2100CD线性加速器6、18MV的两种能量在不同深度的任何场的mu,其统计测定系数为R〜2> 0.98。结论:在每个视场大小和深度上测量mu都存在一些技术问题,但是可以轻松测量在任何视场大小下光束中心轴的每个点的u。

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