论文标题
现实的总体J-PET几何形状优化 - 蒙特卡洛研究
Realistic Total-Body J-PET Geometry Optimization -- Monte Carlo Study
论文作者
论文摘要
全身宠物是最有前途的医学诊断方式之一。总体技术提供的高灵敏度对于正电子成像等新型断层扫描方法可能是有利的。正在进行一些努力,以降低TB-PET系统的价格。在替代方案中,基于塑料闪烁体的Jagiellonian PET(J-PET)技术提供了低成本的替代品。该作品旨在将五个总体J-PET几何形状视为可能的下一代J-PET扫描仪设计。我们介绍了使用J-PET技术的具有成本效益的总体型PET扫描仪的性能特征的比较研究。我们在硅五个体体扫描仪几何形状中进行了研究。进行了XCAT幻影,2米灵敏度线源和正电子灵敏度幻象的蒙特卡洛模拟。我们比较了2-γ和3-gamma断层扫描,设置的相对成本以及对重建图像的定量分析的灵敏度曲线。对重建的XCAT图像的分析揭示了七环扫描仪比三环设置的优越性。但是,三环扫描仪的便宜大约2-3倍。两γ的峰值灵敏度值从20到34 cps/kbq不等。正电子断层扫描的灵敏度曲线的形状与两-γ敏感性曲线相似。峰值与两γ病例相比低约20-28次,最大为1.66 cps/kbq。结果表明,对于下一代TB J-PET设计,所有要考虑的系统的多器官成像的可行性。与Uxplorer的成本相比,所有扫描仪的相对成本约为10-4倍。这些特性与J-PET成本效益结合在一起,使J-PET技术成为诊所广泛应用的有吸引力的解决方案。
Total-Body PET is one of the most promising medical diagnostics modalities. The high sensitivity provided by Total-Body technology can be advantageous for novel tomography methods like positronium imaging. Several efforts are ongoing to lower the price of the TB-PET systems. Among the alternatives, the Jagiellonian PET (J-PET) technology, based on plastic scintillator strips, offers a low-cost alternative. The work aimed to compare five Total-Body J-PET geometries as a possible next generation J-PET scanner design. We present comparative studies of performance characteristics of the cost-effective Total-Body PET scanners using J-PET technology. We investigated in silico five Total-Body scanner geometries. Monte Carlo simulations of the XCAT phantom, the 2-meter sensitivity line source and positronium sensitivity phantoms were performed. We compared the sensitivity profiles for 2-gamma and 3-gamma tomography, relative cost of the setups and performed quantitative analysis of the reconstructed images. The analysis of the reconstructed XCAT images reveals the superiority of the seven-ring scanners over the three-ring setups. However, the three-ring scanners would be approximately 2-3 times cheaper. The peak sensitivity values for two-gamma vary from 20 to 34 cps/kBq. The sensitivity curves for the positronium tomography have a similar shape to the two-gamma sensitivity profiles. The peak values are lower compared to the two-gamma cases, from about 20-28 times, with a maximum of 1.66 cps/kBq. The results show the feasibility of multi-organ imaging of all the systems to be considered for the next generation of TB J-PET designs. The relative cost for all the scanners is about 10-4 times lower compared to the cost of the uExplorer. These properties coupled together with J-PET cost-effectiveness, make the J-PET technology an attractive solution for broad application in clinics.