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A Comparison of BGO, GSO, MLS, LGSO, LYSO and LSO Scintillation Materials for High-Spatial-Resolution Animal PET Detectors

机译:BGO,GSO,MLS,LGSO,LySO和LSO闪烁材料的比较,用于高空间分辨率的动物PET探测器

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We are developing very-high resolution detector blocks for animal PET applications. We studied different scintillating crystals materials, BGO, GSO, LSO, MLS, LGSO, and LYSO, to determine the most suitable material for a low cost and high-resolution detector. In this study, we measured and evaluated two different light-output data from individual crystal samples (two different sizes of needles): The scintillation light output received by the PMT as used in PET (LOPET) and the intrinsic light output (ILO). The ILO data, were measured with the largest side of crystal needles coupled to the PMT (crystal needles "lying down onto the PMT"), the LOPET data, were measured with the smallest crystal end coupled to the PMT as used in a PET detector (the crystal is "standing up" on the PMT). The pulse-height spectra for both ILO and LOPET were acquired for all the individual crystal samples, for deducing the percentages of light joss from self-absorption (LLSA) in the PET detector configuration, and energy resolution in both positions (ILO-ER and LOPET-ER). With these crystals, four detectors blocks were also developed, and we measured the overall light output and the position-decoding maps to gauge the decoding capability (DC) of the crystals. We also compared the visual color and clarity of individual crystals and detector blocks. For the two different sizes of the crystal samples that we received, we have the following finding: (a) For the 1.3×1.3×10 mm crystals "standing up" as used in a PET camera, GSO, MLS and LYSO, lost almost half of the light while LSO lost more than 2/3 thereby ended up with the same light output as GSO. The energy resolution of LSO and GSO are quite similar (16% and 15%); but the light absorption is significant higher in LSO (71%) in comparison to GSO (54%), MLS (52%) and LYSO (48%). (b) For the 2×2×10 mm, the light loss from self-absorption (LLSA) was less than the 1.3 mm samples. MLS has the lowest self-absorption (26%), while GSO and LSO have the highest light loss. LGSO and LSO have the lowest LOPET for all the lutetium crystals tested. (c) From the position-decoding results from the detector blocks, LYSO, MLS and GSO provided better position-decoding resolution than the LSO. (d) For the visually comparison, LSO were visually much darker than the other Lutetium crystals
机译:我们正在为动物宠物应用开发非常高分辨率的探测器块。我们研究了不同的闪烁晶体材料,BGO,GSO,LSO,MLS,LGSO和Lyso,以确定低成本和高分辨率检测器的最合适的材料。在本研究中,我们测量和评估了来自各个晶体样本的两种不同的光输出数据(两种不同尺寸的针):由PET(LOPET)和固有光输出(ILO)中使用的PMT接收的闪烁光输出。使用晶体针的最大侧与耦合到PMT的最大侧测量ILO数据(躺到PMT上的晶体针“),用与PET检测器中使用的最小晶体端耦合到PMT的最小晶体端,测量Lopet数据(水晶在PMT上“站起来”)。获取所有单独的晶体样品的ILO和LoPet的脉冲高度光谱,用于推导在PET检测器配置中的自吸收(LLSA)中的灯光剧百分比,以及两个位置(ILO-ER和)的能量分辨率lopet-er)。利用这些晶体,还开发了四个探测器块,我们测量了整体光输出和位置解码图以衡量晶体的解码能力(DC)。我们还比较了各个晶体和探测器块的视觉颜色和清晰度。对于我们收到的两种不同尺寸的晶体样本,我们有以下发现:(a)对于在宠物摄像头,GSO,MLS和Lyso中使用的1.3×1.3×10毫米晶体“站起来”,几乎失去了一半的光线,而LSO损失超过2/3,从而最终以与GSO相同的光输出。 LSO和GSO的能量分辨率非常相似(16%和15%);但与GSO(54%),MLS(52%)和LySO(48%)相比,LSO(71%)在LSO(71%)中显着较高。 (b)对于2×2×10mm,自吸收(LLSA)的光损失小于1.3mm样品。 MLS具有最低的自吸收(26%),而GSO和LSO具有最高的光损失。 LGSO和LSO对所有测试的所有乳液晶体具有最低的Lopet。 (c)来自检测器块的位置解码结果,Lyso,MLS和GSO提供比LSO更好的位置解码分辨率。 (d)对于视觉上的比较,LSO视觉比其他乳液液体更暗

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