Suppr超能文献

评估一种模块化一体式高分辨率 PET 探测器和读出电子设备设置。

Evaluation of a modular all-in-one high-resolution PET detector and readout electronics setup.

机构信息

Werner Siemens Imaging Center, Department of Preclinical Imaging and Radiopharmacy, Eberhard-Karls University Tuebingen, Tuebingen, Germany.

Siemens Medical Solutions USA Inc., Molecular Imaging, Knoxville, TN, United States of America.

出版信息

Phys Med Biol. 2023 May 29;68(11). doi: 10.1088/1361-6560/acd432.

Abstract

. The all-in-one solution and modularity of the C13500 series TOF-PET detector modules (Hamamatsu Photonics K.K., Hamamatsu, Japan) make them a highly attractive candidate for the development of positron emission tomography (PET) systems. However, the commercially available portfolio targets clinical whole-body PET systems with a scintillation crystal cross area of 3.1 × 3.1 mm. To extend the modules for high resolution (preclinical or organ specific) systems, the support for smaller scintillation crystals is required.In this work, a PET detector was developed based on the TOF-PET modules using a light sharing approach, 16 × 16 lutetium oxyorthosilicate (LSO) scintillation crystals with a size of 1.51 × 1.51 × 10.00 mmreadout with 8 × 8 photosensor channels of size 3.0 × 3.0 mm. In addition to hardware and software development, the optimized parameter settings for the adapted configuration were evaluated.A factor of two in amplification of the analog signal compared to the minimum gain setting was necessary for an accurate crystal identification (peak-to-valley ratio 14.9 ± 5.9). A further increase to a factor of three was not determined as optimum as the time over threshold duration, thus pile-up probability, increased from 1032.1 ± 109.5 to 1789.5 ± 218.5 ns (photopeak position). With this amplification a full width at half maximum (FWHM) energy resolution of 14.1 ± 2.0% and a high linearity of the energy detection was obtained. A FWHM coincidence resolving time (CRT) of 313 ps was achieved by using a low timing threshold, increasing the bandwidth of the front-end circuit and using a narrow ± 1energy window. To approximately double the sensitivity and reduce the power consumption, the timing parameters were adjusted resulting in a FWHM CRT of 354 ps (±2).Based on the results obtained with the proof-of-concept detector setup, we confirm the modularity and flexibility of the all-in-one TOF-PET detector modules for the future development of application-specific high-resolution PET systems.

摘要

. 日本滨松光子学株式会社(Hamamatsu Photonics K.K.)的 C13500 系列 TOF-PET 探测器模块的一体化解决方案和模块化设计,使其成为开发正电子发射断层扫描(PET)系统的极具吸引力的候选者。然而,商业上可用的产品组合针对的是闪烁晶体横截面为 3.1×3.1mm 的临床全身 PET 系统。为了将模块扩展到高分辨率(临床前或器官特异性)系统,需要支持更小的闪烁晶体。在这项工作中,我们基于 TOF-PET 模块,采用一种光分享方法,开发了一种 PET 探测器,使用 16×16 硅酸镥(LSO)闪烁晶体,尺寸为 1.51×1.51×10.00mm,采用 8×8 光电传感器通道,尺寸为 3.0×3.0mm。除了硬件和软件开发,还评估了适应配置的优化参数设置。与最小增益设置相比,模拟信号的放大倍数增加一倍对于准确的晶体识别是必要的(峰谷比 14.9±5.9)。进一步增加到三倍并没有被确定为最佳,因为时间超过阈值的持续时间,因此堆积概率从 1032.1±109.5 增加到 1789.5±218.5ns(光电峰位置)。通过这种放大,获得了 14.1±2.0%的全宽半最大值(FWHM)能量分辨率和高能量检测线性度。通过使用低定时阈值、增加前端电路的带宽和使用窄±1 能量窗口,实现了 313ps 的 FWHM 符合分辨时间(CRT)。为了将灵敏度提高一倍左右并降低功耗,调整了定时参数,从而获得了 354ps(±2)的 FWHM CRT。基于概念验证探测器设置获得的结果,我们确认了一体化 TOF-PET 探测器模块的模块化和灵活性,可用于未来开发特定应用的高分辨率 PET 系统。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验