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Realistic and Efficient Modeling of Radiotracer Heterogeneity in Monte Carlo Simulations of PET Images With Tumors

机译:带有肿瘤的PET图像的Monte Carlo模拟中放射性示踪剂异质性的现实和有效建模

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摘要

Monte Carlo simulations are extensively used in PET to evaluate the accuracy with which PET images can yield reliable estimates of parameters of interest. For such applications, the simulated images should be as realistic as possible so that conclusions can be extrapolated to clinical PET images. In this work, we describe a method for introducing realistic modeling of radiotracer heterogeneity into Monte Carlo simulations of patient PET scans. The modeling of the complex physiological activity distribution in healthy regions is directly based on real patient PET/CT images, and realistic tumor shapes can be included into these regions. This method represents a competitive alternative to the use of complex anthropomorphic phantoms such as the XCAT, that require a fixed activity per structure. The method is extended to the simulation of serial PET scans with tumor changes, as acquired in the context of therapy monitoring, and this extension is validated using a patient study. Using the proposed method, very realistic patient PET images can be produced for evaluation purposes.In addition, a strategy to efficiently simulate many sets of pathological cases, based on a unique background physiological activity distribution, is described and carefully assessed using a numerical phantom. The background activity is simulated only once, while tumors are simulated separately. The data are then recombined in a specific way so that the final image has the same properties as images produced by simulating pathological and tumor activities at the same time.
机译:蒙特卡罗模拟已广泛用于PET中,以评估PET图像可产生可靠的目标参数估计值的准确性。对于此类应用,模拟图像应尽可能逼真,以便可以将结论外推到临床PET图像。在这项工作中,我们描述了一种将放射性示踪剂异质性的逼真的建模引入患者PET扫描的蒙特卡洛模拟中的方法。健康区域中复杂生理活动分布的建模直接基于真实的患者PET / CT图像,并且现实的肿瘤形状可以包含在这些区域中。这种方法是使用复杂的拟人模型(例如XCAT)的竞争选择,后者需要每个结构具有固定的活动。该方法已扩展为模拟在治疗监测范围内获得的具有肿瘤变化的连续PET扫描,并且该扩展已通过患者研究得到验证。使用所提出的方法,可以产生非常逼真的患者PET图像以进行评估。此外,还描述了一种基于独特的背景生理活动分布来有效模拟许多病理病例集的策略,并使用数字体模对其进行了仔细评估。仅模拟背景活动一次,而单独模拟肿瘤。然后以特定方式重新组合数据,以使最终图像具有与通过同时模拟病理和肿瘤活动而产生的图像相同的属性。

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