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Development of a Prototype Detector Using APD-Arrays Coupled With Pixelized Ce:GAGG Scintillator for High Resolution Radiation Imaging

机译:使用APD阵列结合像素化Ce:GAGG闪烁体的高分辨率辐射成像原型探测器的开发。

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摘要

A novel digital PET scanner based on Time over Threshold method is developed. The positron emission tomography (PET) is composed of 144channel Ce:Gd$_{3}$Al$_{2}$Ga$_{3}$O $_{12}$ (GAGG)-Avaranche photodiode (APD) detector arrays individually coupled with custom designed Time over Threshold (ToT) application-specific integrated circuit (ASIC) to realize the high count rate and good spatial resolution. Such an imaging system provides a simple front-end circuit and flexible digital signal processing like multiplexing such as a pulse train method. The measured energy resolution of the detector system was 6.7% for the 511 keV peak, and 4.25 ns time resolution was measured with a single detector module. The measured spatial resolution for a point source was 1.37 mm FWHM for our initial data with a columnar $^{22}$Na source.
机译:开发了一种基于时间阈值方法的新型数字PET扫描仪。正电子发射断层扫描(PET)由144通道Ce:Gd $ _ {3} $ Al $ _ {2} $ Ga $ _ {3} $ O $ _ {12} $(GAGG)-雪崩光电二极管(APD)组成探测器阵列分别与定制设计的阈值时间(ToT)专用集成电路(ASIC)结合使用,以实现高计数率和良好的空间分辨率。这样的成像系统提供了简单的前端电路和灵活的数字信号处理,例如诸如脉冲列方法的复用。对于511 keV峰值,检测器系统的能量分辨率为6.7%,使用单个检测器模块测量的时间分辨率为4.25 ns。对于我们的初始数据,使用点状$ ^ {22} $ Na光源,点光源的测量空间分辨率为1.37 mm FWHM。

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