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SIAT aPET 的设计与性能:使用双端读出探测器的统一高分辨率小动物 PET 扫描仪。

Design and performance of SIAT aPET: a uniform high-resolution small animal PET scanner using dual-ended readout detectors.

机构信息

Paul C. Lauterbur Research Center for Biomedical Imaging, Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences, Shenzhen 518055, People's Republic of China.

Shenzhen College of Advanced Technology, University of Chinese Academy of Sciences, Shenzhen 518055, People's Republic of China.

出版信息

Phys Med Biol. 2020 Nov 27;65(23):235013. doi: 10.1088/1361-6560/abbc83.

Abstract

In this work, a small animal PET scanner named SIAT aPET was developed using dual-ended readout depth encoding detectors to simultaneously achieve high spatial resolution and high sensitivity. The scanner consists of four detector rings with 12 detector modules per ring; the ring diameter is 111 mm and the axial field of view (FOV) is 105.6 mm. The images are reconstructed using an ordered subset expectation maximization (OSEM) algorithm. The spatial resolution of the scanner was measured by using a Na point source at the center axial FOV with different radial offsets. The sensitivity of the scanner was measured at center axis of the scanner with different axial positions. The count rate performance of the system was evaluated by scanning mouse-sized and rat-sized phantoms. An ultra-micro hot-rods phantom and two mice injected with F-NaF and F-FDG were scanned on the scanner. An average depth of interaction (DOI) resolution of 1.96 mm, energy resolution of 19.1% and timing resolution of 1.20 ns were obtained for the detector. Average spatial resolutions of 0.82 mm and 1.16 mm were obtained up to a distance of 30 mm radially from the center of the FOV when reconstructing a point source in 1% and 10% warm backgrounds, respectively, using OSEM reconstruction with 16 subsets and 10 iterations. Sensitivities of 16.0% and 11.9% were achieved at center of the scanner for energy windows of 250-750 keV and 350-750 keV respectively. Peak noise equivalent count rates (NECRs) of 324 kcps and 144 kcps were obtained at an activity of 26.4 MBq for the mouse-sized and rat-sized phantoms. Rods of 1.0 mm diameter can be visually resolved from the image of the ultra-micro hot-rods phantom. The capability of the scanner was demonstrated by high quality in-vivo mouse images.

摘要

本工作开发了一种小动物 PET 扫描仪 SIAT aPET,采用双端读出深度编码探测器,同时实现高空间分辨率和高灵敏度。扫描仪由四个探测器环组成,每个环有 12 个探测器模块;环直径为 111mm,轴向视野(FOV)为 105.6mm。图像使用有序子集期望最大化(OSEM)算法重建。通过在中心轴向 FOV 处使用 Na 点源,在不同的径向偏移处测量扫描仪的空间分辨率。在扫描仪的中心轴处测量扫描仪的灵敏度,在不同的轴向位置处。通过扫描鼠和大鼠大小的体模评估系统的计数率性能。在扫描仪上扫描了超微热棒体模和注射 F-NaF 和 F-FDG 的两只小鼠。探测器的平均交互深度(DOI)分辨率为 1.96mm,能量分辨率为 19.1%,时间分辨率为 1.20ns。在重建 1%和 10%热背景下的点源时,在距离 FOV 中心 30mm 处获得了 0.82mm 和 1.16mm 的平均空间分辨率,使用 16 个子集和 10 次迭代的 OSEM 重建。在扫描仪中心,对于 250-750keV 和 350-750keV 的能窗,分别获得了 16.0%和 11.9%的灵敏度。在 26.4MBq 的活动下,对于鼠和大鼠大小的体模,获得了 324kcps 和 144kcps 的峰值噪声等效计数率(NECR)。可以从超微热棒体模的图像中分辨出 1.0mm 直径的棒。通过高质量的体内小鼠图像证明了扫描仪的能力。

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