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LuCaS2: Efficient Monte Carlo Simulations of Serial PET Scans for Assessing Detection and Quantification Methods Used in Patient Monitoring

机译:LUCAS2:用于评估患者监测的检测和定量方法的串行PET扫描的有效蒙特卡罗模拟

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Objective: PET imaging is a promising approach for the early assessment of tumor response to therapy. However, there are currently no widely accepted rules to interpret the changes seen in successive PET scans. An objective evaluation of the performance of methods dedicated to detecting and characterizing the changes occurring between successive PET scans is needed. In this work, we propose a method to perform realistic Monte Carlo simulations of patient scans in the context of therapy monitoring. Material and Methods: Serial tumor-free sinograms of a patient with no tumor in the regions of interest (here the lungs) are first simulated with the GATE simulation toolkit, based on real PET/CT acquisitions. In addition, tumor-only sinograms are simulated, based on real tumor contours and tumor changes seen in patients. A specific strategy is used to properly relocate tumors from scan to scan. After corrections, the tumor-free and tumor-only sinograms are combined and reconstructed to produce serial scans including realistic tumor changes. We illustrate the relevance of such data for assessing the performance of the EORTC criteria to detect SUV and volume changes in tumors. Results: Using our simulation approach, realistic PET images can be easily produced in reasonable computational times. The results obtained from the simulated images illustrate the limits of the EORTC criteria to assess tumor changes. Conclusion: Monte Carlo simulations can be used to simulate realistic serial PET scans appropriate for assessing the performance of methods dedicated to the detection and quantification of tumor changes.
机译:目的:宠物成像是早期评估肿瘤对疗法的有希望的方法。但是,目前没有广泛接受的规则来解释连续宠物扫描中看到的变化。需要对专用于检测和表征发生在连续宠物扫描之间发生的变化的方法的性能的客观评价。在这项工作中,我们提出了一种在治疗监测背景下执行患者扫描的现实蒙特卡罗模拟的方法。材料和方法:利用栅极仿真工具包首先用浇口仿真工具包在没有真正的PET / CT采集的情况下将患者无肿瘤的无肿瘤的无肿瘤患者的患者的患者的无肿瘤宿族此外,基于患者在患者中看到的真实肿瘤轮廓和肿瘤变化,模拟了仅肿瘤的宿曲。特定策略用于从扫描扫描扫描到扫描。在校正后,组合肿瘤和肿瘤的肿瘤阶层并重建以产生串行扫描,包括现实肿瘤变化。我们说明了这些数据的相关性,用于评估EORTC标准的性能以检测肿瘤的SUV和体积变化。结果:使用我们的仿真方法,可以在合理的计算时间内轻松生产现实宠物图像。从模拟图像获得的结果说明了评估肿瘤变化的Eortc标准的限制。结论:蒙特卡罗模拟可用于模拟适合评估肿瘤变化检测和定量方法的方法的现实串行PET扫描。

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