首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >The X'tal cube PET detector with a monolithic crystal processed by the 3D sub-surface laser engraving technique: Performance comparison with glued crystal elements
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The X'tal cube PET detector with a monolithic crystal processed by the 3D sub-surface laser engraving technique: Performance comparison with glued crystal elements

机译:X'tal cube PET检测器,具有通过3D地下激光雕刻技术处理的整体式晶体:与胶合晶体元件的性能比较

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摘要

The X'tal cube is a depth-of-interaction (DOI)-PET detector which is aimed at obtaining isotropic resolution by effective readout of scintillation photons from six sides of the crystal block. The X'tal cube is composed of a 3D crystal block with isotropic segments. Each face of the 3D crystal block is covered with a 4 × 4 array of multi-pixel photon counters (MPPCs). Previously, in order to fabricate the 3D crystal block efficiently and precisely, we applied a sub-surface laser engraving technique to a monolithic crystal block instead of gluing segmented small crystals. A dense arrangement of multiple micro-cracks carved by the laser beam works efficiently as a scattering wall for the scintillation photons. The X'tal cube with the laser-processed block showed excellent performance with respect to crystal identification and energy resolution. In this work, for characteristics comparison between the laser-processed block and the conventional segmented array block, we made the laser-processed block and two types of segmented array blocks, one with air gaps and the other with glued segmented small crystals. All crystal blocks had 3D grids of 2 mm pitch. The 4×4 MPPC arrays were optically coupled to each surface of the crystal block. When performance was evaluated using a uniform irradiation of 511 keV, we found that the Xtal cubes with the laser-processed block could easily achieve 2 mm~3 uniform crystal identification. Also, the average energy resolution of each 3D grid was 11.1 ± 0.7%. On the other hand, the glued segmented array block had a pinched distribution and crystals could not be separated dearly. The segmented array block with air gaps had satisfactory crystal identification performance; however, the laser-processed block had higher crystal identification performance. Also, the energy resolution of the laser-processed block was better than for the segmented array blocks. In summary, we found the laser-processed X'tal cube had excellent crystal identification performance and high energy performance due to its effective dense arrangement of micro-cracks.
机译:X'tal立方体是一种相互作用深度(DOI)-PET检测器,旨在通过有效读取晶体块六面的闪烁光子来获得各向同性分辨率。 X'tal立方体由具有各向同性链段的3D晶体块组成。 3D晶体块的每个面都覆盖有4×4的多像素光子计数器(MPPC)阵列。以前,为了高效,精确地制造3D晶体块,我们将亚表面激光雕刻技术应用于整块晶体块,而不是将分段的小晶体粘合在一起。由激光束雕刻的多个微裂纹的密集排列可有效地用作闪烁光子的散射壁。带有激光加工块的X'tal立方体在晶体识别和能量分辨率方面表现出出色的性能。在这项工作中,为了比较激光处理块和常规分段阵列块之间的特性,我们制作了激光处理块和两种类型的分段阵列块,一种具有气隙,另一种具有粘合的分段小晶体。所有晶体块均具有2 mm间距的3D网格。将4×4 MPPC阵列光学耦合至晶体块的每个表面。当使用511 keV的均匀照射来评估性能时,我们发现使用激光加工的块的Xtal立方体可以轻松实现2 mm〜3的均匀晶体鉴定。同样,每个3D网格的平均能量分辨率为11.1±0.7%。另一方面,粘合的分段阵列块具有收缩的分布,并且晶体不能彻底分离。具有气隙的分段阵列块具有令人满意的晶体识别性能。但是,激光加工块具有更高的晶体识别性能。而且,激光处理模块的能量分辨率比分段阵列模块更好。总而言之,我们发现激光处理的X'tal立方晶体由于有效地密集排列了微裂纹而具有出色的晶体识别性能和高能量性能。

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  • 作者单位

    Molecular Imaging Center, National Institute of Radiological Sciences, 4-9-1 Anagawa, Inage-ku, Chiba 263-8555, Japan;

    Molecular Imaging Center, National Institute of Radiological Sciences, 4-9-1 Anagawa, Inage-ku, Chiba 263-8555, Japan;

    Molecular Imaging Center, National Institute of Radiological Sciences, 4-9-1 Anagawa, Inage-ku, Chiba 263-8555, Japan;

    Molecular Imaging Center, National Institute of Radiological Sciences, 4-9-1 Anagawa, Inage-ku, Chiba 263-8555, Japan;

    Molecular Imaging Center, National Institute of Radiological Sciences, 4-9-1 Anagawa, Inage-ku, Chiba 263-8555, Japan;

    Hamamatsu Photonics K.K., 5000 Hirakuchi, Hamakita-ku, Hamamatsu, Shizuoka 434-8601, Japan;

    Hamamatsu Photonics K,K,, 5000 Hirakuchi, Hamakita-ku, Hamamatsu, Shizuoka 434-8601, Japan;

    Hamamatsu Photonics K,K,, 5000 Hirakuchi, Hamakita-ku, Hamamatsu, Shizuoka 434-8601, Japan;

    Molecular Imaging Center, National Institute of Radiological Sciences, 4-9-1 Anagawa, Inage-ku, Chiba 263-8555, Japan;

    Molecular Imaging Center, National Institute of Radiological Sciences, 4-9-1 Anagawa, Inage-ku, Chiba 263-8555, Japan;

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  • 正文语种 eng
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  • 关键词

    PET; Detector; DOI;

    机译:宠物;探测器;土井;

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