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Monte Carlo modelling of cone beam collimation with scattering in objects (SPECT application)

机译:锥束准直与物体散射的蒙特卡洛建模(SPECT应用)

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A novel Monte Carlo model of low-energy photon detection is proposed for cone beam collimation. The model is based on the existing analytic formulas of collimator resolution and sensitivity for primary photons as well as forced detection techniques for parallel beam collimation. The collimator resolution for scattered photons is simulated by forcing photons scattered into elliptical acceptance cones oblique to collimator surface. The sensitivity for the scattered photons, used as a weight for variance reduction, is derived based on the sensitivity for primary photons, the Klein-Nishina distribution, and the elliptical acceptance cone subtended by the circular contour of a point response with a radius of FWHM resolution. A circular cone approximation of the elliptical acceptance cones is proposed to increase computational efficiency for the forced detection procedure. The Monte Carlo model with the circular cone approximation is validated by comparing simulated projections with experimental data. The comparison demonstrates the accuracy of the Monte Carlo model of cone beam collimation.
机译:提出了一种新型的低能量光子检测的蒙特卡洛模型,用于锥束准直。该模型基于用于主光子的准直器分辨率和灵敏度的现有解析公式,以及用于平行光束准直的强制检测技术。散射光子的准直仪分辨率是通过迫使散射到倾斜于准直仪表面的椭圆形接收锥中的光子来模拟的。基于初级光子的灵敏度,Klein-Nishina分布以及椭圆响应圆锥的半径为FWHM的点响应的圆形轮廓所得出的散射光子的灵敏度(用作减少方差的权重)解析度。提出了椭圆形接受锥的圆锥近似,以提高强制检测过程的计算效率。通过将模拟投影与实验数据进行比较,验证了具有圆锥近似的蒙特卡洛模型。比较结果证明了锥束准直的蒙特卡罗模型的准确性。

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