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A novel single-ended readout depth-of-interaction PET detector fabricated using sub-surface laser engraving

机译:一种新颖的单端读数使用子表面激光雕刻制造的单一结束读数深度相互作用的宠物检测器

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摘要

We propose a novel scintillation detector design for positron emission tomography (PET), which has depth of interaction (DOI) capability and uses a single-ended readout scheme. The DOI detector contains a pair of crystal bars segmented using sub-surface laser engraving (SSLE). The two crystal bars are optically coupled to each other at their top segments and are coupled to two photo-sensors at their bottom segments. Initially, we evaluated the performance of different designs of single crystal bars coupled to photomultiplier tubes at both ends. We found that segmentation by SSLE results in superior performance compared to the conventional method. As the next step, we constructed a crystal unit composed of a 3 x 3 x 20 mm3 crystal bar pair, with each bar containing four layers segmented using the SSLE. We measured the DOI performance by changing the optical conditions for the crystal unit. Based on the experimental results, we then assessed the detector performance in terms of the DOI capability by evaluating the position error, energy resolution, and light collection efficiency for various crystal unit designs with different bar sizes and a different number of layers (four to seven layers). DOI encoding with small position error was achieved for crystal units composed of a 3 x 3 x 20 mm3 LYSO bar pair having up to seven layers, and with those composed of a 2 x 2 x 20 mm3 LYSO bar pair having up to six layers. The energy resolution of the segment in the seven-layer 3 x 3 x 20mm3 crystal bar pair was 9.3%-15.5% for 662keV gamma-rays, where the segments closer to the photo-sensors provided better energy resolution. SSLE provides high geometrical accuracy at low production cost due to the simplicity of the crystal assembly. Therefore, the proposed DOI detector is expected to be an attractive choice for practical small-bore PET systems dedicated to imaging of the brain, breast, and small animals.
机译:我们提出了一种用于正电子发射断层扫描(PET)的新型闪烁探测器设计,其具有相互作用的深度(DOI)能力,并使用单端读出方案。 DOI检测器包含一对使用子表面激光雕刻(SSLE)分段的一对晶体条。两个晶体条在其顶部区段中彼此光学耦合,并在其底段处耦合到两个光传感器。首先,我们评估了在两端连接到光电倍增管的单晶杆不同设计的性能。我们发现,与传统方法相比,SSLE的分割导致卓越的性能。作为下一步,我们构造了由3×3×20mm3晶条对组成的晶体单元,每个条包含使用SSLE分段的四层。我们通过改变晶体单元的光学条件来测量DOI性能。基于实验结果,我们通过评估具有不同条形尺寸的各种晶体单元设计的位置误差,能量分辨率和光收集效率来评估DOI功能的检测器性能。(四到七个层)。为具有高达七层的3 x 3 x 20 mm3 Lyso BAI组成的晶体单元实现了具有小位置误差的DOI编码,以及由多达六层的2 x 2 x 20 mm3 Lyso BAR组成的晶体单元。七层3×3×20mm3晶体条对的节段的能量分辨率为662kev伽马射线的9.3%-15.5%,其中段更接近光传感器提供更好的能量分辨率。由于晶体组件的简单性,SSLE以低生产成本提供高几何精度。因此,建议的DOI探测器预计是专用于大脑,乳房和小动物成像的实用小钻孔系统的吸引力。

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