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首页> 外文期刊>Physics in medicine and biology. >Towards a quantitative, measurement-based estimate of the uncertainty in photon mass attenuation coefficients at radiation therapy energies
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Towards a quantitative, measurement-based estimate of the uncertainty in photon mass attenuation coefficients at radiation therapy energies

机译:对基于放射治疗能量的光子质量衰减系数的不确定性进行定量,基于测量的估计

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摘要

In this study, a quantitative estimate is derived for the uncertainty in the XCOM photon mass attenuation coefficients in the energy range of interest to external beam radiation therapy-i.e. 100 keV (orthovoltage) to 25 MeV-using direct comparisons of experimental data against Monte Carlo models and theoretical XCOM data. Two independent datasets are used. The first dataset is from our recent transmission measurements and the corresponding EGSnrc calculations (Ali et al 2012 Med. Phys. 39 5990-6003) for 10-30 MV photon beams from the research linac at the National Research Council Canada. The attenuators are graphite and lead, with a total of 140 data points and an experimental uncertainty of similar to 0.5% (k = 1). An optimum energy-independent cross section scaling factor that minimizes the discrepancies between measurements and calculations is used to deduce cross section uncertainty. The second dataset is from the aggregate of cross section measurements in the literature for graphite and lead (49 experiments, 288 data points). The dataset is compared to the sum of the XCOM data plus the IAEA photonuclear data. Again, an optimum energy-independent cross section scaling factor is used to deduce the cross section uncertainty. Using the average result from the two datasets, the energy-independent cross section uncertainty estimate is 0.5% (68% confidence) and 0.7% (95% confidence). The potential for energy-dependent errors is discussed. Photon cross section uncertainty is shown to be smaller than the current qualitative 'envelope of uncertainty' of the order of 1-2%, as given by Hubbell (1999 Phys. Med. Biol 44 R1-22).
机译:在这项研究中,对XCOM光子质量衰减系数的不确定性进行了定量估算,该系数在外部束辐射治疗感兴趣的能量范围内,即100 keV(正电压)至25 MeV-使用实验数据与Monte Carlo模型和理论XCOM数据的直接比较。使用了两个独立的数据集。第一个数据集来自加拿大国家研究委员会研究直线加速器的10-30 MV光子束,来自我们最近的透射测量和相应的EGSnrc计算(Ali等人2012 Med。Phys。39 5990-6003)。衰减器为石墨和铅,共有140个数据点,实验不确定度约为0.5%(k = 1)。最小化测量和计算之间差异的最佳能量无关截面比例因子可用来推导截面不确定性。第二个数据集来自文献中有关石墨和铅的横截面测量的汇总(49个实验,288个数据点)。将数据集与XCOM数据和IAEA光核数据的总和进行比较。同样,使用最佳的与能量无关的截面比例因子来推导截面不确定性。使用两个数据集的平均结果,与能量无关的横截面不确定度估计为0.5%(置信度68%)和0.7%(置信度95%)。讨论了与能量有关的错误的可能性。如Hubbell(1999 Phys。Med。Biol 44 R1-22)所给出的那样,光子横截面的不确定度显示为小于当前定性的“不确定度包络”,为1-2%左右。

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