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Tungsten anode spectral model using Interpolating cubic splines: Unfiltered x-ray spectra from 20 kV to 640 kV

机译:使用插值三次样条的钨阳极光谱模型:20 kV至640 kV的未过滤X射线光谱

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Purpose: Monte Carlo methods were used to generate lightly filtered high resolution x-ray spectra spanning from 20 kV to 640 kV. Methods: X-ray spectra were simulated for a conventional tungsten anode. The Monte Carlo N-Particle eXtended radiation transport code (MCNPX 2.6.0) was used to produce 35 spectra over the tube potential range from 20 kV to 640 kV, and cubic spline interpolation procedures were used to create piecewise polynomials characterizing the photon fluence per energy bin as a function of x-ray tube potential. Using these basis spectra and the cubic spline interpolation, 621 spectra were generated at 1 kV intervals from 20 to 640 kV. The tungsten anode spectral model using interpolating cubic splines (TASMICS) produces minimally filtered (0.8 mm Be) x-ray spectra with 1 keV energy resolution. The TASMICS spectra were compared mathematically with other, previously reported spectra. Results: Using paired f-test analyses, no statistically significant difference (i.e., p > 0.05) was observed between compared spectra over energy bins above 1 % of peak bremsstrahlung fluence. For all energy bins, the correlation of determination (R2) demonstrated good correlation for all spectral comparisons. The mean overall difference (MOD) and mean absolute difference (MAD) were computed over energy bins (above 1% of peak bremsstrahlung fluence) and over all the kV permutations compared. MOD and MAD comparisons with previously reported spectra were 2.7% and 9.7%, respectively (TASMIP), 0.1% and 12.0%, respectively [R. Birch and M. Marshall, "Computation of bremsstrahlung x-ray spectra and comparison with spectra measured with a Ge(Li) detector," Phys. Med. Biol. 24, 505-517 (1979)], 0.4% and 8.1%, respectively (Poludniowski), and 0.4% and 8.1%, respectively (AAPM TG 195). The effective energy of TASMICS spectra with 2.5 mm of added Al filtration ranged from 17 keV (at 20 kV) to 138 keV (at 640 kV); with 0.2 mm of added Cu filtration the effective energy was 9 keV at 20 kV and 169 keV at 640 kV. Conclusions: Ranging from 20 kV to 640 kV, 621 x-ray spectra were produced and are available at 1 kV tube potential intervals. The spectra are tabulated at 1 keV intervals. TASMICS spectra were shown to be largely equivalent to published spectral models and are available in spreadsheet format for interested users by emailing the corresponding author (JMB).
机译:目的:使用蒙特卡洛方法生成范围从20 kV到640 kV的经过轻微过滤的高分辨率X射线光谱。方法:模拟常规钨阳极的X射线光谱。使用蒙特卡罗N粒子扩展的辐射传输代码(MCNPX 2.6.0)在20 kV至640 kV的管电势范围内产生35个光谱,并使用三次样条插值程序创建表征多项式光子通量的分段多项式能量仓与X射线管电势的关系。使用这些基础光谱和三次样条插值法,从20到640 kV以1 kV的间隔生成了621个光谱。使用内插三次样条(TASMICS)的钨阳极光谱模型可产生能量分辨率为1 keV的最小滤波(0.8 mm Be)X射线光谱。将TASMICS光谱与其他先前报告的光谱进行数学比较。结果:使用配对的f检验分析,在高于致辐射通量峰值1%的能量仓上的比较光谱之间,未观察到统计学上的显着差异(即p> 0.05)。对于所有能量仓,测定的相关性(R2)在所有光谱比较中均显示出良好的相关性。计算了能量仓(峰值致辐射通量的1%以上)和所有kV排列的平均总差(MOD)和平均绝对差(MAD)。 MOD和MAD与先前报告的光谱比较分别为2.7%和9.7%(TASMIP),0.1%和12.0%[R. Birch和M. Marshall,“致辐射X射线光谱的计算以及与用Ge(Li)检测器测得的光谱进行比较”,物理。中生物学24,505-517(1979)],分别为0.4%和8.1%(Poludniowski),以及0.4%和8.1%(AAPM TG 195)。添加了2.5 mm的Al过滤后,TASMICS光谱的有效能量范围为17 keV(在20 kV时)至138 keV(在640 kV时)。在添加0.2 mm的铜过滤后,有效能量在20 kV下为9 keV,在640 kV下为169 keV。结论:从20 kV到640 kV不等,产生了621个X射线光谱,并且在1 kV管电位间隔处可用。光谱以1 keV间隔制成表格。事实证明,TASMICS光谱与发布的光谱模型基本等效,可以通过电子表格格式将感兴趣的用户通过电子邮件发送给相应的作者(JMB)获得。

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