首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Four-layer DOI PET detectors using a multi-pixel photon counter array and the light sharing method
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Four-layer DOI PET detectors using a multi-pixel photon counter array and the light sharing method

机译:使用多像素光子计数器阵列的四层DOI PET探测器和光共享方法

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Silicon photomultipliers (SiPMs) provide many advantages for PET detectors, such as their high internal gain, high photon detection efficiency and insensitivity to magnetic fields. The number of detectable scintillation photons of SiPMs, however, is limited by the number of microcells. Therefore, pulse height of PET detectors using SiPMs is saturated when large numbers of scintillation photons enter the SiPM pixels. On the other hand, we previously presented a depth-of-interaction (DOI) encoding method that is based on the light sharing method. Since our encoding method detects scintillation photons with multiple readout pixels, the saturation effect can be suppressed. We constructed two prototype four-layer DOI detectors using a SiPM array and evaluated their performances. The two prototype detectors consisted of four layers of a 6 x 6 array of Lu_(2(1-x))Y_(2x)SiO_5 (LYSO) crystals and a SiPM (multi-pixel photon detector, MPPC, Hamamatsu Photonics K.K.) array of 4 × 4 pixels. The size of each LYSO crystal element was 1.46 mm × 1.46 mm × 4.5 mm and all surfaces of the crystal elements were chemically etched. We used two types of MPPCs. The first one had 3600 microcells and high photon detection efficiency (PDE). The other one had 14,400 microcells and lower PDE. In the evaluation experiment, all the crystals of the detector using the MPPC which had the high PDE were clearly identified. The respective energy and timing resolutions of lower than 15% and 1.0 ns were achieved for each crystal element. No saturation of output signals was observed in the 511 keV energy region due to suppression of the saturation effect by detecting scintillation photons with several MPPC pixels by the light sharing method.
机译:硅光电倍增管(SiPM)为PET检测器提供了许多优势,例如其高内部增益,高光子检测效率和对磁场的不敏感性。但是,SiPM的可检测到的闪烁光子的数量受到微细胞数量的限制。因此,当大量闪烁光子进入SiPM像素时,使用SiPM的PET检测器的脉冲高度饱和。另一方面,我们先前提出了一种基于光共享方法的交互深度(DOI)编码方法。由于我们的编码方法检测具有多个读出像素的闪烁光子,因此可以抑制饱和效应。我们使用SiPM阵列构造了两个原型四层DOI检测器,并评估了它们的性能。两个原型检测器由Lu_(2(1-x))Y_(2x)SiO_5(LYSO)晶体的6 x 6阵列和SiPM(多像素光子检测器,MPPC,Hamamatsu Photonics KK)阵列的四层组成。 4×4像素。每个LYSO晶体元件的尺寸为1.46mm×1.46mm×4.5mm,并且对晶体元件的所有表面进行了化学蚀刻。我们使用了两种类型的MPPC。第一个具有3600个微细胞和高光子检测效率(PDE)。另一个具有14,400个微电池和较低的PDE。在评估实验中,使用MPPC的PDE高的检测器的所有晶体均被清晰鉴定。每个晶体元件的能量和时序分辨率分别低于15%和1.0 ns。通过光共享方法通过检测具有多个MPPC像素的闪烁光子,由于抑制了饱和效应,在511 keV能量区域未观察到输出信号的饱和。

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