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Dynamic 99mTc-MAG3 renography: Images for quality control obtained by combining pharmacokinetic modelling, an anthropomorphic computer phantom and Monte Carlo simulated scintillation camera imaging

机译:动态99mTc-MAG3肾脏造影:通过药代动力学建模,拟人计算机体模和Monte Carlo模拟闪烁照相机成像相结合的质量控制图像

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摘要

In dynamic renal scintigraphy, the main interest is the radiopharmaceutical redistribution as a function of time. Quality control (QC) of renal procedures often relies on phantom experiments to compare image-based results with the measurement setup. A phantom with a realistic anatomy and time-varying activity distribution is therefore desirable. This work describes a pharmacokinetic (PK) compartment model for 99mTc-MAG3, used for defining a dynamic whole-body activity distribution within a digital phantom (XCAT) for accurate Monte Carlo (MC)-based images for QC. Each phantom structure is assigned a time-activity curve provided by the PK model, employing parameter values consistent with MAG3 pharmacokinetics. This approach ensures that the total amount of tracer in the phantom is preserved between time points, and it allows for modifications of the pharmacokinetics in a controlled fashion. By adjusting parameter values in the PK model, different clinically realistic scenarios can be mimicked, regarding, e.g., the relative renal uptake and renal transit time. Using the MC code SIMIND, a complete set of renography images including effects of photon attenuation, scattering, limited spatial resolution and noise, are simulated. The obtained image data can be used to evaluate quantitative techniques and computer software in clinical renography.
机译:在动态肾脏闪烁显像中,主要的兴趣是放射性药物随时间的重新分布。肾脏手术的质量控制(QC)通常依赖于幻像实验,以将基于图像的结果与测量设置进行比较。因此,期望具有现实的解剖结构和随时间变化的活动分布的体模。这项工作描述了99mTc-MAG3的药代动力学(PK)隔室模型,该模型用于定义数字体模(XCAT)中的动态全身活动分布,以进行基于蒙特卡洛(MC)的精确QC图像。使用与MAG3药代动力学一致的参数值,为每个幻像结构分配由PK模型提供的时间-活动曲线。这种方法可确保在幻象之间保留示踪剂的总量,并允许以受控方式修改药代动力学。通过调整PK模型中的参数值,可以模拟不同的临床实际情况,例如,相对肾脏摄取和肾脏通过时间。使用MC代码SIMIND,可以模拟一组完整的肾影图像,包括光子衰减,散射,有限的空间分辨率和噪声的影响。所获得的图像数据可用于评估临床肾脏造影中的定量技术和计算机软件。

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