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Three-dimensional array of scintillation crystals with proper reflector arrangement for a depth of interaction detector

机译:具有适当反射器布置的闪烁晶体的三维阵列,用于深度探测器

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A new method to acquire four-layer depth of interaction (DOI) information is proposed for the next generation positron emission tomography scanner (jPET-D4) that realizes high resolution and high sensitivity. The detector module of the jPET-D4 is a 16/spl times/16/spl times/4 Gd/sub 2/SiO/sub 5/: Ce (GSO) multicrystal array coupled with a 256 ch flat panel position sensitive photomultiplier tube (256 ch FP-PMT) having large opening area. The first challenge to encode DOI information was carried out with 8/spl times/8 array of units consisted of 2/spl times/2/spl times/4 crystal elements. The unit is developed for four-layer DOI encoding in previous report. Its crystal identification performance is evaluated by uniform gamma ray irradiation. The measured scintillation events are mapped on a two-dimensional (2-D) position histogram according to the relative ratio of the multianode output of the FP-PMT. However, peaks corresponding to the crystal elements of one unit form a colony in the resultant 2-D position histogram and there is large space between adjacent colonies. In the new method, the reflector arrangement which makes proper light sharing in the multicrystal array decreases such wasted space. Consequently, peak-to-valley on the 2-D position histogram was improved to 3.3:1 from 1.8:1. We found energy performance was also enhanced by the new method.
机译:提出了一种新的获取四层相互作用深度(DOI)信息的方法,用于实现高分辨率和高灵敏度的下一代正电子发射断层扫描仪(jPET-D4)。 jPET-D4的检测器模块是16 / spl倍/ 16 / spl倍/ 4 Gd / sub 2 / SiO / sub 5 /:Ce(GSO)多晶阵列与256 ch平板位置敏感光电倍增管( 256通道FP-PMT)具有较大的开口面积。对DOI信息进行编码的第一个挑战是使用8 / spl次/ 8个单元阵列(由2 / spl次/ 2 / spl次/ 4个晶体元素组成)进行的。该单元是针对先前报告中的四层DOI编码而开发的。通过均匀的伽马射线辐射评估其晶体鉴定性能。根据FP-PMT的多阳极输出的相对比率,将测得的闪烁事件映射到二维(2-D)位置直方图上。然而,与一个单位的晶体元素对应的峰在所得的二维位置直方图中形成菌落,并且相邻菌落之间存在较大的空间。在新方法中,使多晶体阵列中的适当光共享的反射器布置减少了这种浪费的空间。因此,二维位置直方图上的峰谷比从1.8:1提高到3.3:1。我们发现新方法还提高了能源性能。

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