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脑专用 PET 扫描仪的计数率性能:一项蒙特卡罗模拟研究。

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

机构信息

Department of Physics and Astronomy, University of Manitoba, Winnipeg, MB R3T 2N2, Canada. Author to whom any correspondence should be addressed.

出版信息

Phys Med Biol. 2019 Oct 31;64(21):215013. doi: 10.1088/1361-6560/ab452f.

Abstract

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, detector thickness of 10 to 20 mm and a fixed crystal pitch of ~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.

摘要

近年来,人们对专门用于脑部的 PET 成像系统重新产生了兴趣,特别是在结合 PET/MR 成像的情况下。我们目前正在设计一种适用于超高场脑部专用磁共振扫描仪(西门子 Magnetom 7T 磁共振扫描仪)的专用脑部 PET 插入件。本文通过一系列蒙特卡罗模拟报告了对几种可能的探测器的计数率性能的研究。模拟了具有硅酸镥闪烁体和探测器面积为 0.04(每个探测器一个晶体)至 101.37(每个探测器 2500 个晶体)cm、探测器厚度为 10 至 20mm 和固定晶体间距约 2mm 的专用脑部 PET 扫描仪。根据探测器死时间类型和常数、符合定时窗口和低水平鉴别器评估了每个扫描仪的计数率性能。此外,还研究了视野(FOV)外的活性对每个扫描仪的计数率性能的影响。对于每种探测器几何形状和性能指标,测量了 FOV 中活性的单个探测器速率、探测器灵敏度和噪声等效计数率。结果表明,由于探测器之间的散射数量较多,由几个晶体元件组成的探测器的灵敏度降低。另一方面,大探测器的计数率性能主要取决于探测器的死时间特性。在这项工作中,提出了一种用于研究的每个探测器的扫描仪计数率性能模型。

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