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Performance Simulation of an Ultra-High Resolution Brain PET Scanner Using 1.2-mm Pixel Detectors

机译:使用1.2毫米像素检测器的超高分辨率大脑PET扫描仪的性能模拟

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摘要

The concept of a new ultra-high resolution positron emission tomography (PET) brain scanner featuring truly pixelated detectors based on the LabPET II technology is presented. The aim of this study is to predict the performance of the scanner using GATE simulations. The NEMA procedures for human and small animal PET scanners were used, whenever appropriate, to simulate spatial resolution, scatter fraction, count rate performance and the sensitivity of the proposed system compared to state-of-the-art PET scanners that would currently be the preferred choices for brain imaging, namely the HRRT dedicated brain PET scanner and the Biograph Vision wholebody clinical PET scanner. The imaging performance was also assessed using the NEMA-NU4 image quality phantom, a mini hot spot phantom and a 3-D voxelized brain phantom. A reconstructed nearly isotropic spatial resolution of 1.3 mm FWHM is obtained at 10 mm from the center of the field of view. With an energy window of 250–650 keV, the system absolute sensitivity is estimated at 3.4% and its maximum NECR reaches 16.4 kcps at 12 kBq/cc. The simulation results provide evidence of the promising capabilities of the proposed scanner for ultra-high resolution brain imaging.
机译:提出了一种新的超高分辨率正电子发射断层扫描(PET)脑部扫描仪的概念,该扫描仪具有基于LabPET II技术的真正像素化检测器。这项研究的目的是使用GATE模拟来预测扫描仪的性能。与目前最先进的PET扫描仪相比,在适当的情况下,都会使用针对人类和小型动物PET扫描仪的NEMA程序来模拟空间分辨率,散射分数,计数率性能和拟议系统的灵敏度。脑成像的首选,即HRRT专用脑PET扫描仪和Biograph Vision全身临床PET扫描仪。还使用NEMA-NU4图像质量体模,迷你热点体模和3-D体素化的大脑体模评估了成像性能。在距视场中心10 mm处获得了1.3 mm FWHM的重构近乎各向同性的空间分辨率。在250–650 keV的能量窗口下,系统绝对灵敏度估计为3.4%,其最大NECR在12 kBq / cc时达到16.4 kcps。仿真结果提供了所提出的扫描仪用于超高分辨率大脑成像的有前途功能的证据。

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