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Electrical delay line multiplexing for pulsed mode radiation detectors

机译:脉冲辐射探测器的电延迟线多路复用

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摘要

Medical imaging systems are composed of a large number of position sensitive radiation detectors to provide high resolution imaging. For example, whole-body Positron Emission Tomography (PET) systems are typically composed of thousands of scintillation crystal elements, which are coupled to photosensors. Thus, PET systems greatly benefit from methods to reduce the number of data acquisition channels, in order to reduce the system development cost and complexity. In this paper we present an electrical delay line multiplexing scheme that can significantly reduce the number of readout channels, while preserving the signal integrity required for good time resolution performance. We experimented with two 4 × 4 LYSO crystal arrays, with crystal elements having 3 mm × 3 mm × 5 mm and 3 mm × 3 mm × 20 mm dimensions, coupled to 16 Hamamatsu MPPC S10931-050P SiPM elements. Results show that each crystal could be accurately identified, even in the presence of scintillation light sharing and inter-crystal Compton scatter among neighboring crystal elements. The multiplexing configuration degraded the coincidence timing resolution from ~ 243 ps FWHM to ~272 ps FWHM when 16 SiPM signals were combined into a single channel for the 4 × 4 LYSO crystal array with 3 mm × 3 mm × 20 mm crystal element dimensions, in coincidence with a 3 mm × 3 mm × 5 mm LYSO crystal pixel. The method is exible to allow multiplexing configurations across different block detectors, and is scalable to an entire ring of detectors.
机译:医学成像系统由大量位置敏感的辐射探测器组成,以提供高分辨率的成像。例如,全身正电子发射断层扫描(PET)系统通常由数千个闪烁晶体元素组成,这些元素与光电传感器耦合。因此,PET系统极大地受益于减少数据采集通道数量的方法,从而降低了系统开发成本和复杂性。在本文中,我们提出了一种电延迟线复用方案,该方案可以显着减少读出通道的数量,同时保留良好的时间分辨率性能所需的信号完整性。我们用两个4×4 LYSO晶体阵列进行了实验,它们的晶体元件尺寸分别为3 mm×3 mm×5 mm和3 mm×3 mm×20 mm,并与16个Hamamatsu MPPC S10931-050P SiPM元件耦合。结果表明,即使在相邻晶体元素之间存在闪烁光共享和晶体间康普顿散射的情况下,也可以准确识别每个晶体。当将16 SiPM信号合并到一个3 mm×3 mm×20 mm晶体元件尺寸的4×4 LYSO晶体阵列的单个通道中时,多路复用配置将同时定时分辨率从〜243 ps FWHM降低到〜272 ps FWHM。与3mm×3mm×5mm LYSO晶体像素重合。该方法适用于跨不同块检测器的多路复用配置,并且可扩展到整个检测器环。

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