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Performance evaluation of four-layer DOI detectors using multi-pixel photon counter arrays

机译:使用多像素光子计数器阵列的四层DOI探测器的性能评估

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Multi-pixel photon counters (MPPC) have many advantages for PET detectors, such as high internal gain, high photon detection efficiency, lower power supply and insensitivity to magnetic fields. However, the saturation effect is unavoidable phenomenon for PET detectors using MPPCs which need to collect large number of scintillation photons to achieve high energy and timing resolutions. In a lot of cases, pulse height of PET detectors using MPPCs are saturated in high energy region. On the other hand, since our DOI encoding method previously presented is sharing scintillation photons to multiple pixels, the saturation effect can be suppressed. We constructed prototype four-layer detectors using two MPPC arrays and evaluated their detector performances. We constructed the prototype detector consisting of four layers of a 6 × 6 array of Lu2(1-x)Y2x SiO5 (LYSO) (Lu: 98 %, Y: 2 %) crystals (Proteus Inc., U. S. A.), and a MPPC array of 4 × 4 pixels (S11064 series, Hamamatsu Photonics K.K.). The size of each crystal element was 1.46 mm × 1.46 mm × 4.5 mm and all surfaces of crystal elements were chemically etched. For comparison, the two types of MPPC, S11064–050P (3600 cells) and S11064–025P (14400 cells), were used in the experiment. As a result, the all of the crystals of the detector using 050P were clearly identified while the crystal identification performance of the detector using 025P was degraded due to lower photon detection efficiency. The energy resolution of 11.0–13.6% (050P) and 12.7–15.2% (025P) were achieved. No saturations were observed for both detectors under the 511keV energy region.
机译:多像素光子计数器(MPPC)对PET探测器具有许多优点,例如高内部增益,高光子检测效率,较低的电源和对磁场的不敏感性。然而,使用MPPC需要收集大量闪烁光子以实现高能量和定时分辨率的PET检测器是不可避免的现象。在很多情况下,使用MPPCS的PET检测器的脉冲高度在高能区域中饱和。另一方面,由于我们先前呈现的DOI编码方法是将闪烁光子共享到多个像素,因此可以抑制饱和效果。我们使用两个MPPC阵列构造了原型四层探测器,并评估了其检测器性能。我们构建了由四层6&#x00d7组成的原型检测器; 6阵列LU 2(1-X) Y 2x SIO 5 (LYSO)(LU:98%,Y:2%)晶体(Proteus Inc.,USA)和MPPC阵列为4× 4个像素(S11064系列,Hamamatsu Photonics K.K.)。每个晶体元素的尺寸为1.46mm× 1.46 mm× 4.5mm,化学蚀刻晶体元素的所有表面。为了比较,在实验中使用了两种类型的MPPC,S11064-050P(3600个细胞)和S11064-025P(14400个细胞)。结果,在使用025P的检测器的晶体识别性能由于较低的光子检测效率降低了检测器的晶体识别性能的同时清楚地识别出使用050P的所有晶体。实现了11.0-13.6%(050p)和12.7-15.2%(025p)的能量分辨率。对于511KeV能量区域下的探测器,没有观察到饱和饱和度。

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