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Evaluation of Compton attenuation and photoelectric absorption coefficients by convolution of scattering and primary functions and counts ratio on energy spectra

机译:通过散射和一次函数的卷积以及能谱的计数比评估康普顿衰减和光电吸收系数

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Purpose:Estimation of Compton attenuation and the photoelectric absorption coefficients were explored at various depths.Methods:A new method was proposed for estimating the depth based on the convolution of two exponential functions, namely convolution of scattering and primary functions (CSPF), which the convolved result will conform to the photopeak region of energy spectrum with the variable energy-window widths (EWWs) and a theory on the scattering cross-section. The triple energy-windows (TEW) and extended triple energy-windows scatter correction (ETEW) methods were used to estimate the scattered and primary photons according to the energy spectra at various depths due to a better performance than the other methods in nuclear medicine. For this purpose, the energy spectra were employed, and a distinct phantom along with a technetium-99 m source was simulated by Monte Carlo method.Results:The simulated results indicate that the EWW, used to calculate the scattered and primary counts in terms of the integral operators on the functions, was proportional to the depth as an exponential function. The depth will be calculated by the combination of either TEW or ETEW and proposed method resulting in the distinct energy-window. The EWWs for primary photons were in good agreement with those of scattered photons at the same as depths. The average errors between these windows for both methods TEW, and ETEW were 7.25% and 6.03% at different depths, respectively. The EWW value for functions of scattered and primary photons was reduced by increasing the depth in the CSPF method.Conclusions:This coefficient may be an index for the scattering cross-section.
机译:目的:探讨不同深度的康普顿衰减估计和光电吸收系数。方法:提出一种基于两个指数函数的卷积估计深度的新方法,即散射和初级函数卷积(CSPF),卷积结果将符合具有可变能量窗口宽度(EWW)的能谱的光峰区域以及散射截面的理论。由于在核医学中的其他方法具有更好的性能,因此使用三重能量窗口(TEW)和扩展的三重能量窗口散射校正(ETEW)方法根据不同深度的能谱来估计散射光子和初级光子。为此,使用了能谱,并通过蒙特卡洛方法模拟了一个独特的幻影以及with 99 m光源。结果:模拟结果表明,EWW用于计算散射计数和一次计数。函数上的积分算符与深度成指数比例。深度将通过TEW或ETEW与所提出的方法相结合来计算,从而产生不同的能量窗口。与深度相同的原始光子的EWW与散射光子的EWW高度吻合。在两种方法TEW和ETEW的不同深度下,这些窗口之间的平均误差分别为7.25%和6.03%。通过增加CSPF方法的深度,可以减小散射光子和初级光子功能的EWW值。结论:该系数可能是散射截面的指标。

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