首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Assessment of the Mosaic animal PET system response using list-mode data for validation of GATE Monte Carlo modelling
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Assessment of the Mosaic animal PET system response using list-mode data for validation of GATE Monte Carlo modelling

机译:使用列表模式数据评估镶嵌动物PET系统响应以验证GATE蒙特卡洛建模

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Monte Carlo modelling is widely used in nuclear medicine for system optimization and for image processing in order to obtain system data that cannot be measured experimentally. Any simulation model should be validated, especially in terms of spatial resolution, count rates, scatter fraction and sensitivity in the case of positron emission tomography (PET) systems. The aim of this study was to compare the performance of a Mosaic animal PET system model to the real system by using raw data in a list-mode format, in order to preserve all the precision and accuracy of the acquired data. GATE package was used to design a realistic model of the Mosaic system. Detectors, shielding, cap, air medium, phantoms, sources and electronic processing were simulated in GATE. Sensitivity obtained from experimental and simulated data were compared using the list-mode data for different energy windows. Measurements of count rates were performed for uniform cylindrical phantoms for both mouse and rat. Output data were recorded with the same spatial sampling as the experimental data. Point spread functions at different locations in the field of view were analysed in raw and reconstructed formats. Simulated and measured sensitivity differed by less than 5%. Simulated and measured single and prompt count rates agreed within 6% for activities up to 100 MBq for the two phantoms. A semi-empirical approach was used to simulate energy efficiency and losses of resolution after crystals interactions (detector blurring). Spatial resolution, assessed on simulated sinograms and on reconstructed data, agreed with real data. Comprehensive evaluation of the Monte Carlo modelling of a microPET system was performed using list-mode data and showed that the GATE model was appropriate to accurately reproduce the response of the system.
机译:蒙特卡洛建模广泛用于核医学中,用于系统优化和图像处理,以获得无法通过实验测量的系统数据。任何仿真模型都应进行验证,尤其是在正电子发射断层扫描(PET)系统的情况下,应在空间分辨率,计数率,散射分数和灵敏度方面进行验证。这项研究的目的是通过使用列表模式格式的原始数据来比较马赛克动物PET系统模型与真实系统的性能,以保留所获取数据的所有精度和准确性。 GATE软件包用于设计马赛克系统的逼真的模型。在GATE中模拟了探测器,屏蔽,帽,空气介质,体模,光源和电子处理。使用不同能量窗口的列表模式数据,比较了从实验和模拟数据获得的灵敏度。对小鼠和大鼠的均一圆柱体模进行计数率的测量。用与实验数据相同的空间采样记录输出数据。以原始和重构的格式分析了视野中不同位置的点扩散函数。模拟和测量的灵敏度相差不到5%。对于两个体模,最高100 MBq的活动,模拟和测量的单次计数率和即时计数率在6%以内。使用半经验方法模拟晶体相互作用(检测器模糊)后的能效和分辨率损失。根据模拟正弦图和重建数据评估的空间分辨率与实际数据一致。使用列表模式数据对microPET系统的Monte Carlo建模进行了综合评估,结果表明GATE模型适合准确再现系统的响应。

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