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首页> 外文期刊>IEEE Transactions on Nuclear Science >Preliminary resolution performance of the prototype system for a 4-Layer DOI-PET scanner: jPET-D4
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Preliminary resolution performance of the prototype system for a 4-Layer DOI-PET scanner: jPET-D4

机译:4层DOI-PET扫描仪的原型系统的初步分辨率性能:jPET-D4

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We are developing a high-performance brain PET scanner, jPET-D4, which provides 4-layer depth-of-interaction (DOI) information. The scanner is designed to achieve not only high spatial resolution but also high scanner sensitivity with the DOI information obtained from multi-layered thin crystals. The scanner has 5 rings of 24 detector blocks each, and each block consists of 1024 GSO crystals of 2.9 mm/spl times/2.9 mm/spl times/7.5 mm, which are arranged in 4 layers of 16/spl times/16 arrays. At this stage, a pair of detector blocks and a coincidence circuit have been assembled into an experimental prototype gantry. In this paper, as a preliminary experiment, we investigated the performance of the jPET-D4's spatial resolution using the prototype system. First, spatial resolution was measured from a filtered backprojection reconstructed image. To avoid systematic error and reduce computational cost in image reconstruction, we applied the DOI compression (DOIC) method followed by maximum likelihood expectation maximization that we had previously proposed. Trade-off characteristics between background noise and resolution were investigated because improved spatial resolution is possible only when enhanced noise is avoided. Experimental results showed that the jPET-D4 achieves better than 3 mm spatial resolution over the field-of-view.
机译:我们正在开发一种高性能的大脑PET扫描仪jPET-D4,它可以提供4层交互深度(DOI)信息。扫描仪旨在通过从多层薄晶体获得的DOI信息实现高空间分辨率和高扫描仪灵敏度。扫描器有5个环,每个环有24个检测器块,每个块由1024颗2.9 mm / spl次/2.9 mm / spl次/7.5 mm的GSO晶体组成,并以16 / spl次/ 16阵列的4层排列。在这一阶段,一对检测器模块和一个重合电路已经组装成一个实验原型机架。在本文中,作为初步实验,我们使用原型系统研究了jPET-D4的空间分辨率性能。首先,从滤波后的反投影重建图像测量空间分辨率。为了避免系统误差并减少图像重建中的计算成本,我们应用了DOI压缩(DOIC)方法,然后采用了先前提出的最大似然期望最大化。研究了背景噪声与分辨率之间的权衡特性,因为只有在避免增强噪声的情况下,才有可能提高空间分辨率。实验结果表明,jPET-D4在视野范围内获得了优于3 mm的空间分辨率。

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