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基于单片GAGG:Ce晶体的高性能编码孔径伽马相机。

High-performance coded aperture gamma camera based on monolithic GAGG:Ce crystal.

作者信息

He Wen, Wang Yingjie, Liang Xiuzuo, Zhou Wei, Zhu Meiling, Han Xiaorou, Zhai Jiajia, Zeng Xiangtao, Feng Baotong, Tang Haohui, Li Daowu, Zhang Zhiming, Wei Long, Huang Xianchao

机构信息

Beijing Engineering Research Center of Radiographic Techniques and Equipment, Institute of High Energy Physics, Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Rev Sci Instrum. 2021 Jan 1;92(1):013106. doi: 10.1063/5.0035991.

Abstract

A 50 × 50 × 10 mm monolithic gadolinium aluminum gallium garnet (GdAlGaO; GAGG):Ce crystal coupled to a 8 × 8 silicon photomultiplier (SiPM) array was developed; it showed very good system uniformity and a high energy resolution of 7.4% at 662 keV. By using a convolutional neural network-based positioning algorithm and a fan-beam calibration method, the detector achieved a position resolution of ∼1.4 mm and a depth of interaction resolution of ∼2 mm. Based on this high-performance monolithic detector, we developed a coded aperture gamma camera. A 1-mCi Cs-137 source centered at a 2-m distance from the mask could be reconstructed with a signal-to-noise ratio of 6.5 in 1 s. Furthermore, the imaging ability of a low-energy Am-241 source and a low-activity Cs-137 source when the background-to-signal ratio was approximately 1:1 and a double low-activity source (Cs-137 and Na-22) was demonstrated. It is shown that the monolithic-crystal-based coded aperture gamma camera can achieve high performance and has a large potential for further improvement.

摘要

研制了一种尺寸为50×50×10毫米的整体式钆铝镓石榴石(GdAlGaO;GAGG):Ce晶体,其与一个8×8硅光电倍增管(SiPM)阵列耦合;该晶体在662keV能量下表现出非常好的系统均匀性和7.4%的高能量分辨率。通过使用基于卷积神经网络的定位算法和扇形束校准方法,该探测器实现了约1.4毫米的位置分辨率和约2毫米的相互作用深度分辨率。基于这种高性能的整体式探测器,我们开发了一种编码孔径伽马相机。一个位于距掩膜2米处、活度为1毫居里的Cs-137源,能够在1秒内以6.5的信噪比进行重建。此外,还展示了低能Am-241源和低活度Cs-137源在背景与信号比约为1:1时的成像能力,以及双低活度源(Cs-137和Na-22)的成像能力。结果表明,基于整体式晶体的编码孔径伽马相机能够实现高性能,并且具有进一步改进的巨大潜力。

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