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不同厚度的高采样单片正电子发射断层扫描(PET)探测器的时间、能量和空间特性

Timing, Energy, and Spatial Characterization of Highly Sampled Monolithic PET Detectors with Different Thicknesses.

作者信息

Valladares Celia, Barrio John, Freire Marta, Cucarella Neus, Lamprou Efthymios, Miyaoka Robert S, Hunter William C J, Harrison Robert, Gonzalez Antonio J

机构信息

Instituto de Instrumentación para Imagen Molecular (I3M), Centro mixto CSIC - Universitat Politècnica de València, 46022 Valencia, Spain.

University of Washington Department of Radiology, Seattle, WA 98195 USA.

出版信息

IEEE Trans Radiat Plasma Med Sci. 2023 Sep;7(7):704-711. doi: 10.1109/trpms.2023.3280711. Epub 2023 May 29.

Abstract

The HyPET project proposes a hybrid dedicated TOF-PET for prostate imaging, with pixelated detector blocks in the front layer and monolithic blocks in the back layer. In this work, four detector configurations have been experimentally evaluated for the rear detector layer. The detector configuration consists of LYSO monolithic blocks with the same size (25.4 mm × 25.4 mm) but different thicknesses (5, 7.5, 10, and 15 mm) coupled to the same SiPM array. Each detector configuration has been experimentally characterized in terms of time, energy and spatial resolution by scanning the crystal surface using a fan beam in steps of 0.25 mm. Regarding spatial resolution, the interaction position was estimated using a Neural Network technique. All resolutions except energy, which remains nearly constant at 17% for all cases, show better values for the 5 mm detector thickness. We have achieved spatial resolution values of FWHM of 1.02 ± 0.10, 1.19 ± 0.13, 1.53 ± 0.17, 2.33 ± 0.55 mm, for the 5, 7.5, 10, and 15 mm blocks, respectively. The detector time resolution obtained was 275 ± 26, 291 ± 21, 344 ± 48, and 433 ± 45 ps respectively, using the energy weighted average method for the time stamps.

摘要

HyPET项目提出了一种用于前列腺成像的混合型专用TOF-PET,其前层为像素化探测器模块,后层为整块式模块。在这项工作中,对后探测器层的四种探测器配置进行了实验评估。探测器配置由尺寸相同(25.4毫米×25.4毫米)但厚度不同(5、7.5、10和15毫米)的LYSO整块式模块与同一SiPM阵列耦合组成。通过使用扇形束以0.25毫米的步长扫描晶体表面,对每种探测器配置在时间、能量和空间分辨率方面进行了实验表征。关于空间分辨率,使用神经网络技术估计相互作用位置。除能量分辨率在所有情况下几乎恒定在17%外,所有分辨率在探测器厚度为5毫米时表现出更好的值。对于5、7.5、10和15毫米的模块,我们分别实现了FWHM空间分辨率值为1.02±0.10、1.19±0.13、1.53±0.17、2.33±0.55毫米。使用时间戳的能量加权平均方法,获得的探测器时间分辨率分别为275±26、291±21、344±48和433±45皮秒。

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