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Physical effects of mechanical design parameters on photon sensitivity and spatial resolution performance of a breast-dedicated PET system

机译:机械设计参数对乳腺专用PET系统的光子灵敏度和空间分辨率性能的物理影响

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摘要

>Purpose: This study aims to address design considerations of a high resolution, high sensitivity positron emission tomography scanner dedicated to breast imaging.>Methods: The methodology uses a detailed Monte Carlo model of the system structures to obtain a quantitative evaluation of several performance parameters. Special focus was given to the effect of dense mechanical structures designed to provide mechanical robustness and thermal regulation to the minuscule and temperature sensitive detectors.>Results: For the energies of interest around the photopeak (450–700 keV energy window), the simulation results predict a 6.5% reduction in the single photon detection efficiency and a 12.5% reduction in the coincidence photon detection efficiency in the case that the mechanical structures are interspersed between the detectors. However for lower energies, a substantial increase in the number of detected events (approximately 14% and 7% for singles at a 100–200 keV energy window and coincidences at a lower energy threshold of 100 keV, respectively) was observed with the presence of these structures due to backscatter. The number of photon events that involve multiple interactions in various crystal elements is also affected by the presence of the structures. For photon events involving multiple interactions among various crystal elements, the coincidence photon sensitivity is reduced by as much as 20% for a point source at the center of the field of view. There is no observable effect on the intrinsic and the reconstructed spatial resolution and spatial resolution uniformity.>Conclusions: Mechanical structures can have a considerable effect on system sensitivity, especially for systems processing multi-interaction photon events. This effect, however, does not impact the spatial resolution. Various mechanical structure designs are currently under evaluation in order to achieve optimum trade-off between temperature stability, accurate detector positioning, and minimum influence on system performance.
机译:>目的:本研究旨在解决致力于乳腺成像的高分辨率,高灵敏度正电子发射断层扫描仪的设计考虑。>方法:该方法使用了详细的蒙特卡洛模型系统结构可对几个性能参数进行定量评估。特别关注致密的机械结构的作用,该结构旨在为微小的和温度敏感的探测器提供机械鲁棒性和热调节。>结果:对于光电峰周围的感兴趣能量(450-700 keV能量)如果将机械结构散布在检测器之间,则模拟结果预测单光子检测效率将降低6.5%,同时光子检测效率将降低12.5%。但是,对于较低的能量,观察到的事件数量显着增加(在100–200 keV的能量窗口下单打分别约为14%和7%,在100 keV的较低能量阈值下的巧合分别出现)。这些结构由于反向散射。结构的存在还影响涉及各种晶体元素中的多种相互作用的光子事件的数量。对于涉及各种晶体元素之间多重相互作用的光子事件,对于视场中心的点光源,重合光子灵敏度会降低多达20%。对内在和重构的空间分辨率和空间分辨率均匀性没有可观察到的影响。>结论:机械结构可以对系统灵敏度产生相当大的影响,尤其是对于处理多相互作用光子事件的系统。但是,此效果不会影响空间分辨率。当前正在评估各种机械结构设计,以便在温度稳定性,准确的检测器位置和对系统性能的影响最小之间取得最佳平衡。

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