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Development of a new, fast, user friendly, ray tracing program 'CSIM' for the simulation of parallelhole collimators

机译:开发新的,快速,用户友好的光线跟踪程序“ CSIM”,用于模拟平行孔准直器

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摘要

We have developed a fast, user friendly, ray-tracing program, "CSIM" for low-energy gamma rays (up to ~200. keV) to simulate the performance characteristics of parallelhole collimators. We have used a ray-tracing approach to find the sensitivity and resolution of the parallelhole collimator by including the penetration of photons through the collimator due to the finite attenuation of the collimator material. "CSIM" can calculate the sensitivity of the collimator, the geometric and penetrating photon ratios, and the 1D and 2D point source response functions (PSF) with the statistical uncertainty for different hole shapes (e.g. square, hexagonal, and cylindrical). We have used "CSIM" to simulate the collimator of the YAP-(S)PETII small animal scanner. We present the analysis of the YAP-(S)PETII scanner round-hole parallel collimator designed for nuclear medicine imaging at 140. keV. For this aim, different designs have been considered for a variety of source-collimator distances (b= 5, 10, 15, 20. cm). Resolution and sensitivity characteristics have been plotted as a function of the collimator thickness and the diameter of the hole. For each value of the source-collimator distance, and for each collimator thickness investigated, the trade-off between sensitivity and spatial resolution has been given as a series of characteristic curves. Then, we compare our simulated resolution and sensitivity results to the analytically calculated ones and found that the analytically calculated results for the YAP-(S)PETII scanner collimator are not far away the results predicted by CSIM and also with the experimentally measured resolution values.
机译:我们开发了一种快速,用户友好的光线跟踪程序“ CSIM”,用于低能伽马射线(最高〜200​​ keV),以模拟平行孔准直器的性能特征。我们已经使用了一种射线追踪方法,通过归因于准直仪材料有限衰减的光子穿过准直仪的穿透,来找到平行孔准直仪的灵敏度和分辨率。 “ CSIM”可以计算准直仪的灵敏度,几何和穿透光子比以及1D和2D点源响应函数(PSF),并具有针对不同孔形状(例如正方形,六角形和圆柱形)的统计不确定性。我们使用“ CSIM”来模拟YAP-(S)PETII小动物扫描仪的准直仪。我们目前的分析设计用于140 keV核医学成像的YAP-(S)PETII扫描仪圆孔平行准直仪。为了这个目的,已经针对各种源准直器距离(b = 5、10、15、20.cm)考虑了不同的设计。分辨率和灵敏度特性已作为准直仪厚度和孔直径的函数作图。对于源准直仪距离的每个值以及所研究的每个准直仪的厚度,灵敏度和空间分辨率之间的权衡已作为一系列特性曲线给出。然后,我们将模拟的分辨率和灵敏度结果与分析得出的结果进行比较,发现YAP-(S)PETII扫描仪准直仪的分析结果与CSIM预测的结果以及实验测量的分辨率值相差不远。

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