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首页> 外文期刊>The Journal of Nuclear Medicine >High-Resolution Depth-Encoding PET Detector Module with Prismatoid Light-Guide Array
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High-Resolution Depth-Encoding PET Detector Module with Prismatoid Light-Guide Array

机译:具有Prismatoid光导阵列的高分辨率深度编码PET检测器模块

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摘要

Depth-encoding detectors with single-ended readout provide a practical, cost-effective approach for constructing high-resolution and high-sensitivity PET scanners. However, the current iteration of such detectors uses a uniform glass light-guide to achieve depth encoding, resulting in nonuniform performance throughout the detector array due to suboptimal intercrystal light sharing. We introduce Prism-PET, a single-ended-readout PET detector module with a segmented light-guide composed of an array of prismatoids that introduce enhanced, deterministic light sharing. Methods: High-resolution PET detector modules were fabricated with single-ended readout of polished multicrystal lutetium yttrium orthosilicate scintillator arrays directly coupled 4-to-1 and 9-to-1 to arrays of 3 x 3 mm silicon photomultiplier pixels. Each scintillator array was coupled at the nonreadout side to a light-guide (one 4-to-1 module with a uniform glass light-guide, one 4-to-1 Prism-PET module, and one 9-to-1 Prism-PET module) to introduce intercrystal light sharing, which closely mimics the behavior of dual-ended readout, with the additional benefit of improved crystal identification. Flood histogram data were acquired using a 3-MBq Na-22 source to characterize crystal identification and energy resolution. Lead collimation was used to acquire data at specific depths to determine depth-of-interaction (DOI) resolution. Results: The flood histogram measurements showed excellent and uniform crystal separation throughout the Prism-PET modules, whereas the uniform glass light-guide module had performance degradation at the edges and corners. A DOI resolution of 5.0 mm full width at half maximum (FWHM) and an energy resolution of 13% FWHM were obtained in the uniform glass light-guide module. By comparison, the 4-to-1 coupled Prism-PET module achieved a DOI resolution of 2.5 mm FWHM and an energy resolution of 9% FWHM. Conclusion: PET scanners based on our Prism-PET modules with segmented prismatoid light-guide arrays can achieve high and uniform spatial resolution (9-to-1 coupling with similar to 1-mm crystals), high sensitivity (20-mm-thick detectors and intercrystal Compton scatter recovery), good energy and timing resolutions (using polished crystals and after applying DOI correction), and compact size (depth encoding eliminates parallax error and permits smaller ring-diameter).
机译:具有单端读数的深度编码探测器提供了一种用于构建高分辨率和高灵敏度PET扫描仪的实用,经济有效的方法。然而,这种检测器的电流迭代使用均匀的玻璃光导,实现深度编码,导致由于次优晶光共享而导致整个检测器阵列的不均匀性能。我们引入了棱镜宠物,一个单端读出的宠物检测器模块,具有由引入增强的,确定性光分享的伪装阵列组成的分段光导。方法:高分辨率PET检测器模块用单端读出的抛光多晶含钇钇镍硅酸盐直接耦合4-1和9至1至3×3mm光电倍增器像素的阵列。每个闪烁体阵列在非readout侧耦合到光导(带均匀玻璃光导的一个4到1个模块,一个4到1棱镜 - PET模块,以及一个9对1棱镜 - PET模块)引入介体光线共享,这密切模仿双端读数的行为,并提高了晶体识别的额外益处。使用3 MBQ NA-22源获得泛型直方图数据来表征晶体识别和能量分辨率。用于在特定深度获取数据以确定相互作用(DOI)分辨率的数据。结果:洪水直方图测量在棱镜 - PET模块中显示出优异且均匀的晶体分离,而均匀的玻璃光导模块在边缘和角落处具有性能劣化。在均匀玻璃光导模块中获得5.0毫米全宽5.0mm的全宽度的分辨率和13%FWHM的能量分辨率。相比之下,4至1耦合棱镜PET模块实现了2.5mm FWHM的DOI分辨率和9%FWHM的能量分辨率。结论:基于我们的棱镜 - PET模块的PET扫描仪具有分段伪装光导阵列可以实现高且均匀的空间分辨率(9至1耦合,与1毫米晶体相似),灵敏度高(20毫米厚的探测器)和介体康普顿散射恢复),良好的能量和定时分辨率(使用抛光晶体和施加DOI校正后),紧凑的尺寸(深度编码消除了视差误差并允许较小的环直径)。

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