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Count rate performance of brain-dedicated PET scanners: a Monte Carlo simulation study

机译:脑专用宠物扫描仪计数率表现:蒙特卡罗模拟研究

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In recent years, there has been a renewed interest in brain-dedicated PET imaging systems, particularly in the context of combined PET/MR imaging. We are currently designing a brain-dedicated PET insert suitable for an ultra-high field brain-dedicated MR scanner, the Siemens Magnetom 7T MR scanner. In this paper, an investigation on the count rate performance of several possible detectors through a series of Monte Carlo simulations is reported. Brain-dedicated PET scanners with a lutetium oxyorthosilicate scintillator and a detector area of 0.04 (1 crystal per detector) to 101.37 (2500 crystals per detector) cm(2), detector thickness of 10 to 20 mm and a fixed crystal pitch of similar to 2 mm were simulated. The count rate performance of each scanner was evaluated as a function of detector deadtime type and constant, coincidence timing window and lower level discriminator. Also, the effects of activity outside the field-of-view (FOV) on the count rate performance of each scanner were studied. For each detector geometry and performance metric, the scanner singles rate, scanner sensitivity and noise equivalent count rate as a function of activity in the FOV were measured. It was seen that scanners with detectors comprised a few crystal elements showed reduced scanner sensitivity due to a high number of inter-detector scattering. The count rate performance of scanners with large detectors, on the other hand, was mainly determined by the deadtime properties of the detectors. A model for the count rate performance of the scanner with each studied detector is presented in this work.
机译:近年来,对脑 - 专用宠物成像系统进行了重新兴趣,特别是在宠物/先生成像的背景下。我们目前正在设计一个适用于超高场脑专用MR扫描仪的脑专用宠物插入,Siemens MagnetoM 7T Mr Scanner。在本文中,报道了通过一系列蒙特卡罗模拟的几种可能探测器的计数率性能的研究。脑 - 专用的宠物扫描仪,含氧化型硅酸盐氟化铝酸液和0.04(每次检测器1个晶体)的探测器面积为101.37(每次检测器2500晶体)cm(2),检测器厚度为10至20mm,固定的晶体间距类似于模拟2毫米。每个扫描仪的计数率性能被评估为检测器死区型和恒定,符合时序窗口和较低级别鉴别器的函数。此外,研究了视野外活动(FOV)之外的影响对每个扫描仪的计数率性能。对于每个检测器几何和性能度量,测量扫描仪单曲率,扫描仪灵敏度和噪声等效计数率作为FOV中的活动函数。有人看出,由于探测器的帧间间散射数,具有探测器的扫描仪显示出几个晶体元件的扫描仪灵敏度降低。另一方面,大探测器的扫描仪的计数率性能主要由检测器的死区时间属性决定。在这项工作中介绍了每个研究探测器的扫描仪计数率性能的模型。

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