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Evaluation of a BGO-Based PET System for Single-Cell Tracking Performance by Simulation and Phantom Studies

机译:通过仿真和虚拟研究评估基于BGO的PET系统的单细胞跟踪性能

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摘要

A recent method based on positron emission was reported for tracking moving point sources using the Inveon PET system. However, the effect of scanner background noise was not further explored. Here, we evaluate tracking with the Genisys4, a bismuth germanate-based PET system, which has no significant intrinsic background and may be better suited to tracking lower and/or faster activity sources. Position-dependent sensitivity of the Genisys4 was simulated in Geant4 Application for Tomographic Emission (GATE) using a static 18F point source. Trajectories of helically moving point sources with varying activity and rotation speed were reconstructed from list-mode data as described previously. Simulations showed that the Inveon’s ability to track sources within 2 mm of localization error is limited to objects with a velocity-to-activity ratio < 0.13 mm/decay, compared to < 0.29 mm/decay for the Genisys4. Tracking with the Genisys4 was then validated using a physical phantom of helically moving [18F] fluorodeoxyglucose-in-oil droplets (< 0.24 mm diameter, 139-296 Bq), yielding < 1 mm localization error under the tested conditions, with good agreement between simulated sensitivity and measured activity (Pearson correlation R = .64, P << .05 in a representative example). We have investigated the tracking performance with the Genisys4, and results suggest the feasibility of tracking low activity, point source-like objects with this system.
机译:据报道,使用Inveon PET系统跟踪基于正电子发射的最新方法来跟踪移动点源。但是,没有进一步探讨扫描仪背景噪声的影响。在这里,我们使用Genisys4(基于锗酸铋的PET系统)评估跟踪,该系统没有明显的固有背景,并且可能更适合于跟踪较低和/或较快的活动源。使用静态 18 F点源在Geant4断层扫描应用(GATE)中模拟了Genisys4的位置相关灵敏度。如前所述,从列表模式数据重建了具有变化的活动性和旋转速度的螺旋移动点源的轨迹。仿真表明,Inveon跟踪源与定位误差在2 mm以内的源的能力仅限于速度与活动比<0.13 mm /衰变的对象,而Genisys4的<0.29 mm /衰变。然后使用螺旋移动的[ 18 F]氟脱氧葡萄糖在油中的液滴(直径<0.24 mm,139-296 Bq)的物理模型验证Genisys4的跟踪,在以下条件下产生<1 mm的定位误差测试条件下,在模拟灵敏度和测得的活性之间具有良好的一致性(皮尔逊相关系数R = 0.64,在代表性示例中P 0.05)。我们已经研究了Genisys4的跟踪性能,结果表明使用该系统跟踪低活动性,类似点源的对象的可行性。

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