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PET and SPECT dual-tracer imaging: correction of 511keV photon#x2019;s down-scatter effect on SPECT

机译:PET和SPECT双跟踪成像:校正511Kev光子对SPECT的脱散效果

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This work was part of the feasibility study of performing simultaneous PET and SPECT imaging with a microPET scanner. SPECT data were acquired with slit-slat collimation by inserting a slit-slat collimator into microPET’s detector ring but were contaminated by 511 keV photons’ downscattered events from PET tracer. In this study, contribution of down-scattered events in Tc-99m energy window (135−145 keV) was characterized through Monte Carlo simulation and measurements. With relative ratio of Tc-99m and F-18 activity being 1:1, ratio of recorded events from Tc-99m and F-18 source was 1:18.31. Nevertheless, simulation results revealed that the majority of down-scattering effects occurred in the detector crystals and thus were less object dependent. We investigated two subtraction-based compensation methods. The first method used an auxiliary energy window (AEW) and the second method employed extra shielding measurement (ESM) to acquire downscatter- only data. Simulated and experimental studies showed improved image quality after applying the correction methods. With the activity ratio of SPECT tracer to PET tracer being 5:1, good SPECT images were obtained after correction, which were comparable to those from pure SPECT imaging.
机译:这项工作是使用微呼吸扫描仪进行同时宠物和SPECT成像的可行性研究的一部分。通过将狭缝板准直器插入MicroPet的探测圈,而是通过从PET示踪剂的511 Kev Photons的下散射事件被污染,通过切割板​​条准直,通过狭缝板准直。在该研究中,通过蒙特卡罗模拟和测量,特征在于TC-99M能量窗口(135-145keV)中的下散散事件的贡献。具有TC-99M和F-18活性的相对比率为1:1,TC-99M和F-18源的记录事件的比率为1:18.31。然而,仿真结果表明,大部分落散射效应发生在检测器晶体中,因此依赖于物体较小。我们调查了两种基于减法的补偿方法。第一种方法使用辅助能量窗口(EEV)和第二种方法采用额外的屏蔽测量(ESM)来获取额外的数据。模拟和实验研究显示校正方法后的图像质量改善。利用SPECT示踪剂的活动比率为PET示踪剂为5:1,校正后获得良好的SPECT图像,其与纯SPECT成像相当。

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