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Optimization of crystal length and coating to improve the Depth Of Interaction spatial resolution in PET imaging

机译:晶体长度和涂层的优化,提高宠物成像中交互空间分辨率的深度

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Recent researches in PET instrumentation tend to improve the reconstructed spatial resolution using the gamma ray Depth Of Interaction (DOI) information. This method, already introduced by Moses et al., requires reading both ends of a scintillating crystal to be efficient. The recorded charges obtained by the two photodetector such as Photomultiplier Tubes (PMT) or Avalanche PhotoDiodes (APD) are dependent on the depth gamma ray interaction. Braem et al. recently used the contrast calculated as the ratio between the difference of the recorded charges and their sum to improve the DOI spatial resolution. In this work, we investigate the optimization of the crystal length and coating to improve the depth of interaction spatial resolution in PET applications. For a 1.5 × 1.5 mm~2 LYSO:Ce crystal section read at both ends by PMT, we find that a length of 25 mm and a coating made with PMMA and 30% of TiO_2 are appropriate to reach a DOI spatial resolution of 1 mm.
机译:最近在PET仪器的研究倾向于使用伽马射线深度(DOI)信息来改善重建的空间分辨率。这种方法已经由Moses等人引入。需要读取闪烁晶体的两端以有效。由两个光电探测器(例如光电倍增管(PMT)或雪崩光电二极管(APD)获得的记录电荷取决于深度伽马射线相互作用。 Braem等人。最近使用对比度计算为记录的费用差异与其总和之间的比率,以提高DOI空间分辨率。在这项工作中,我们研究了晶体长度和涂层的优化,以改善PET应用中的相互作用空间分辨率的深度。对于1.5×1.5 mm〜2 Lyso:CE晶体部分通过PMT两端读取,我们发现长度为25毫米和用PMMA制造的涂层和30%的TiO_2是合适的,以达到1毫米的DOI空间分辨率。

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