Simulation study to optimize the number of photo-detection faces and inter-crystal materials for the X'tal cube PET detector

Takahiro Matsumoto, T. Yamaya, E. Yoshida, F. Nishikido, N. Inadama, H. Murayama, M. Suga
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Abstract

We are developing a novel PET detector with 3D isotropic resolution, the X'tal cube. Our original idea was to cover all 6 surfaces of a segmented crystal block with multi-pixel photon counters (MPPCs) for effective scintillation photon acquisition. On the other hand, modification toward practical use is important in terms of assembling efficiency and production costs. In addition, when the X'tal cubes are arranged to form a PET scanner, insensitive inter-detector gaps made by the MPPC arrays should not be too wide or better yet, they should be removed. Therefore, reducing the number of faces to be connected to the MPPCs has become our top priority. In this paper, we evaluated the effect of reducing the number of MPPCs on positioning accuracy through numerical simulations. We optimized the X'tal cube in terms of the gap material of crystal segments and the number of MPPC connection faces. We simulated the X'tal cube with (3.0 mm)3 crystal segments; the crystal block was composed of 6 × 6 × 6 array of (3.0 mm)3 LGSO crystals. Each surface of the crystal block was covered with a 4 × 4 array of MPPCs, each of which had a 3.0 × 3.0 mm2 active area. Outer surfaces of the crystal block, except for the partitions that the MPPCs were arranged on, were covered with reflectors. For material between crystal elements, we compared optical glue and air gap. The air gap showed better crystal identification performance than the optical glue, although good crystal identification performance was obtained even with optical glue for the 6-face MPPC connection. We showed that the number of MPPC connection faces could be reduced to two when the gap material was air.
X立方PET探测器光探测面数目及晶体间材料优化模拟研究
我们正在开发一种具有三维各向同性分辨率的新型PET探测器,X立方。我们最初的想法是用多像素光子计数器(MPPCs)覆盖分割晶体块的所有6个表面,以实现有效的闪烁光子采集。另一方面,从装配效率和生产成本的角度来看,面向实际应用的改进是重要的。此外,当X立方排列形成PET扫描仪时,由MPPC阵列产生的探测器间不敏感的间隙不应太宽或更好,它们应被移除。因此,减少与mppc连接的面数已成为我们的首要任务。在本文中,我们通过数值模拟评估了减少mppc数量对定位精度的影响。我们从晶段间隙材料和MPPC连接面数量两方面对X立方结构进行了优化。我们用(3.0 mm)3个晶段模拟X立方;晶体块由6 × 6 × 6阵列(3.0 mm)3个LGSO晶体组成。晶体块的每个表面都覆盖有4 × 4的MPPCs阵列,每个MPPCs具有3.0 × 3.0 mm2的有效面积。晶体块的外表面,除了放置MPPCs的隔板外,都覆盖着反射器。对于晶体元素之间的材料,我们比较了光胶和气隙。对于6面MPPC连接,气隙的晶体识别性能优于光学胶,而光学胶的晶体识别性能也较好。我们发现,当间隙材料为空气时,MPPC连接面的数量可以减少到两个。
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