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Development of a micro PET system with improved spatial resolution through depth-of-interaction measurement

机译:通过交互深度测量开发具有改进的空间分辨率的微型PET系统

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In small diameter positron emission tomography (PET) systems, the determination of the depth-of-interaction (DOI) of 511 keV gamma photons in scintillator crystals is of great importance, in order to achieve high DOI resolution with good uniformity within the entire field-of-view. In this work, we propose a new method for DOI determination, in which a single layer of LYSO crystals is read out on both ends through the use of silicon photomultipliers (SiPMs), but using wavelength-shifting fibers and a reduced number of SiPMs on one end. This design results in a simpler and less expensive readout when compared to the typical dual-ended readout method, which requires two photodetectors per crystal and corresponding readout electronics. GATE simulation of the system was carried out and experimental proof-of-concept studies were performed on a single detector cell (composed of two LYSO crystals operating in coincidence), to evaluate the amount of light detected on each side of the crystal and the achievable DOI resolution with this method, taking into account the attenuation of the light signal on the fiber side with crystal-SiPM distance. The feasibility of applying this new method in full detector rings for a small animal PET system is evaluated and discussed, considering different alternatives for position readout electronics.
机译:在小直径正电子发射断层扫描(PET)系统中,确定闪烁体晶体中511 keV伽马光子的相互作用深度(DOI)至关重要,这是为了实现高DOI分辨率并在整个视场内保持良好的均匀性-观点。在这项工作中,我们提出了一种确定DOI的新方法,其中通过使用硅光电倍增管(SiPM)在两端读取单层LYSO晶体,但使用波长移位光纤和数量减少的SiPM一端。与典型的双端读出方法相比,该设计可实现更简单且更便宜的读出,该方法需要每个晶体两个光电检测器以及相应的读出电子器件。对系统进行了GATE模拟,并在单个检测器单元(由同时运行的两个LYSO晶体组成)上进行了实验性的概念验证研究,以评估在晶体每一侧检测到的光量以及可实现的光量。使用这种方法进行DOI解析时,要考虑到光纤侧的光信号随晶体SiPM距离的衰减。考虑到位置读取电子设备的不同替代方案,评估和讨论了将这种新方法应用于小型动物PET系统的完整检测器环中的可行性。

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