首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Development of a large-area monolithic 4x4 MPPC array for a future PET scanner employing pixelized Ce:LYSO and Pr:LuAG crystals
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Development of a large-area monolithic 4x4 MPPC array for a future PET scanner employing pixelized Ce:LYSO and Pr:LuAG crystals

机译:为未来的PET扫描仪开发大面积单片4x4 MPPC阵列,采用像素化Ce:LYSO和Pr:LuAG晶体

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摘要

We have developed a new type of large-area monolithic Multi-Pixel Photon Counter (MPPC) array consisting of a 4 x 4 matrix of 3 x 3 mm2 pixels. Each pixel comprises 3600 Geiger mode avalanche photodiodes (APDs) that achieve an average gain of 9.68 x 10~5 at 71.9 V at 0 C with variations of only ± 7.2% over 4x4 pixels. Excellent uniformity was also obtained for photon detection efficiencies (PDE) of ±6.4%, whilst dark count rates at the single photoelectron (1 p.e.) level amounted to (≈) 2 Mcps/pixel, measured at 0 ℃. As the first step toward using the device in scintillation photon detectors, we fabricated a prototype gamma-ray camera consisting of an MPPC array optically coupled with a scintillator matrix, namely a 4 x 4 array of 3 x 3 x 10 mm3 crystals. Specifically, we tested the performance with Ce-doped (Lu. Y)_2(SiO_4)O (Ce:LYSO), Pr-doped Lu_3Al_50i_2 (Pr:LuAG) and "surface coated" Pr:LuAG (Pr:LuAG (WLS)) matrices whereby the emission peak of Pr:LuAG was shifted from 310 to 420 nm via a wavelength shifter (WLS). Average energy resolutions of 13.83%, 14.70% and 13.96% (FWHM) were obtained for 662 keV gamma-rays, as measured at 0 °C with Ce:LYSO, Pr:LuAG and Pr:LuAG (WLS) scintillator matrices, respectively. We confirmed that the effective PDE for PnLuAG (WLS) had improved by more than 30% compared to original, non-coated Pr:LuAG matrix. These results suggest that a large-area monolithic MPPC array developed here could be promising for future medical imaging, particularly in positron emission tomography (PET).
机译:我们已经开发了一种新型的大面积单片多像素光子计数器(MPPC)阵列,该阵列由3 x 3 mm2像素的4 x 4矩阵组成。每个像素包含3600个Geiger模式雪崩光电二极管(APD),它们在01.9 C,71.9 V,0 C下的平均增益为9.68 x 10〜5,在4x4像素上的变化仅为±7.2%。在±6.4%的光子检测效率(PDE)下也获得了出色的均匀性,而在0℃下测得的单个光电子(1 p.e.)水平的暗计数率为(≈)2 Mcps /像素。作为在闪烁光子检测器中使用该设备的第一步,我们制造了一个原型伽马射线照相机,该照相机由与闪烁体矩阵光学耦合的MPPC阵列组成,即3 x 3 x 10 mm3晶体的4 x 4阵列。具体来说,我们测试了Ce掺杂(Lu。Y)_2(SiO_4)O(Ce:LYSO),Pr掺杂Lu_3Al_50i_2(Pr:LuAG)和“表面涂层” Pr:LuAG(Pr:LuAG(WLS))的性能)矩阵,其中Pr:LuAG的发射峰通过波长移位器(WLS)从310 nm移至420 nm。如在0°C下分别用Ce:LYSO,Pr:LuAG和Pr:LuAG(WLS)闪烁体矩阵测量,对于662 keV伽马射线,平均能量分辨率为13.83%,14.70%和13.96%(FWHM)。我们证实,与原始的未涂层Pr:LuAG基质相比,PnLuAG(WLS)的有效PDE改善了30%以上。这些结果表明,这里开发的大面积单片MPPC阵列对于未来的医学成像,尤其是在正电子发射断层扫描(PET)中,可能很有希望。

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    Research Institute for Science and Engineering. Waseda University, 3-4-1, Ohkubo, Shinjuku, Tokyo, Japan;

    Research Institute for Science and Engineering. Waseda University, 3-4-1, Ohkubo, Shinjuku, Tokyo, Japan;

    Research Institute for Science and Engineering. Waseda University, 3-4-1, Ohkubo, Shinjuku, Tokyo, Japan;

    Research Institute for Science and Engineering. Waseda University, 3-4-1, Ohkubo, Shinjuku, Tokyo, Japan;

    Research Institute for Science and Engineering. Waseda University, 3-4-1, Ohkubo, Shinjuku, Tokyo, Japan;

    Solid State Division, Hamamatsu Photonics K. K. 1126-1, Ichino-cho, Hamamatsu, Shizuoka, Japan;

    Solid State Division, Hamamatsu Photonics K. K. 1126-1, Ichino-cho, Hamamatsu, Shizuoka, Japan;

    Solid State Division, Hamamatsu Photonics K. K. 1126-1, Ichino-cho, Hamamatsu, Shizuoka, Japan;

    Solid State Division, Hamamatsu Photonics K. K. 1126-1, Ichino-cho, Hamamatsu, Shizuoka, Japan;

    ISAS/JAXA, 3-1-1, Yoshinodai, Chuo-ku, Sagamihara-shi, Kanagawa, Japan;

    ISAS/JAXA, 3-1-1, Yoshinodai, Chuo-ku, Sagamihara-shi, Kanagawa, Japan;

    Materials Research Laboratory, Furukawa Co., Ltd., 1-25-13. Kannondai, Tsukuba. Ibaraki 305-0856, Japan;

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  • 正文语种 eng
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  • 关键词

    multi-pixel photon counter; camma-rays; positron emission tomography;

    机译:多像素光子计数器;γ射线;正电子发射断层扫描;

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