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首页> 外文期刊>Physics in medicine and biology. >Fast modelling of the collimator-detector response in Monte Carlo simulation of SPECT imaging using the angular response function.
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Fast modelling of the collimator-detector response in Monte Carlo simulation of SPECT imaging using the angular response function.

机译:使用角度响应函数在SPECT成像的蒙特卡罗模拟中对准直仪-检测器响应进行快速建模。

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摘要

Interactions of incident photons with the collimator and detector, including septal penetration, scatter and x-ray fluorescence, are significant sources of image degradation in applications of SPECT including dual isotope imaging and imaging using radioisotopes that emit high- or medium-energy photons. Modelling these interactions using full Monte Carlo (MC) simulations is computationally very demanding. We present a new method based on the use of angular response functions (ARFs). The ARF is a function of the incident photon's direction and energy and represents the probability that a photon will either interact with or pass through the collimator, and be detected at the intersection of the photon's direction vector and the detection plane in an energy window of interest. The ARFs were pre-computed using full MC simulations of point sources that include propagation through the collimator-detector system. We have implemented the ARF method for use in conjunction with the SimSET/PHG MC code to provide fast modelling of both interactions in the patient and in the collimator-detector system. Validation results in the three cases studied show that there was good agreement between the projections generated using the ARF method and those from previously validated full MC simulations, but with hundred to thousand fold reductions in simulation time.
机译:在SPECT的应用中,包括双同位素成像和使用发射高或中能光子的放射性同位素成像,入射光子与准直仪和检测器的相互作用(包括间隔穿透,散射和X射线荧光)是图像退化的重要来源。使用完整的蒙特卡洛(MC)模拟对这些交互进行建模在计算上非常困难。我们提出了一种基于使用角响应函数(ARF)的新方法。 ARF是入射光子方向和能量的函数,表示光子将与准直器相互作用或通过准直器并在感兴趣的能量窗口中的光子方向矢量和检测平面的交点处被检测到的概率。 。使用点源的完整MC模拟(包括通过准直仪-探测器系统的传播)对ARF进行了预先计算。我们已经实现了将ARF方法与SimSET / PHG MC代码结合使用,以提供对患者以及准直仪-检测器系统中相互作用的快速建模。在所研究的三个案例中的验证结果表明,使用ARF方法生成的投影与先前验证的完整MC仿真的投影之间具有良好的一致性,但是仿真时间减少了数百至数千倍。

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