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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Studies on sub-millimeter LYSO: Ce, Ce: GAGG, and a new Ce: GFAG block detector for PET using digital silicon photomultiplier
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Studies on sub-millimeter LYSO: Ce, Ce: GAGG, and a new Ce: GFAG block detector for PET using digital silicon photomultiplier

机译:使用数字硅光电倍增管研究亚毫米LYSO:Ce,Ce:GAGG和新型Ce:GFAG块探测器用于PET的研究

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摘要

The spatial, timing, and energy resolutions of a detector affect the image quality of a positron emission tomography (PET) system. These parameters are in turn dependent on various factors, such as the choice of scintillator, photodetectors, reflector material, and surface treatment (rough or polished) of the scintillators. In this study, we investigated the performances of sub-millimeter scintillator array, LYSO:Ce (polished and rough surfaces with BaSO4 reflector or enhanced specular reflector (ESR)), a gadolinium aluminum gallium garnet (Ce:GAGG, rough surface with BaSO4 reflector), and a new gadolinium fine aluminum gallate (Ce:GFAG, rough surface with BaSO4 reflector) detectors. The outer dimension of each scintillator block was similar to 12 x 12 mm with a 12 x 12 matrix of 0.9 x0.9x 6 mm(3) crystal elements. These blocks were optically coupled to a digital silicon photomultiplier (dSiPM, DPC-3200-22-44) with a 1 mm thick optical guide. Experiments were conducted at a sensor temperature of similar to 15 degrees C, and a two-dimensional position histogram for Na-22 gamma photons showed that all pixels were clearly resolved for all block detectors (peak-to-valley ratios ranging from 5.3 to 11.1). The average energy resolutions for the LYSO (ESR, rough), LYSO (ESR, polished), LYSO (BaSO4, rough), LYSO (BaSO4, polished), GAGG (BaSO4, rough), and GFAG (BaSO4, rough) arrays were measured as 11.3%, 10.2%, 18.7%, 10.3%, 10.0%, and 13.2% full width at half maximum (FWHM), respectively. The coincidence resolving times (with 3 x 3 x 5 mm(3) LYSO crystal as reference) for the LYSO (ESR, rough), LYSO (ESR, polished), LYSO (BaSO4, rough), LYSO (BaSO4, polished), GAGG (BaSO4, rough), and GFAG (BaSO4, rough) arrays were 209 ps, 222 ps, 197 ps, 230 ps, 321 ps, and 276 ps, respectively. In conclusion, the new GFAG scintillator may be a promising candidate for future high-resolution time-of-flight (ToF) PET systems, considering the tradeoff between its performance and potential to be grown at a lower cost.
机译:检测器的空间,时间和能量分辨率会影响正电子发射断层扫描(PET)系统的图像质量。这些参数又取决于各种因素,例如闪烁器,光电探测器,反射器材料的选择以及闪烁器的表面处理(粗糙或抛光)。在这项研究中,我们研究了亚毫米闪烁体阵列,LYSO:Ce(带有BaSO4反射镜或增强镜面反射镜(ESR)的抛光和粗糙表面),a铝镓石榴石(Ce:GAGG,带有BaSO4反射镜的粗糙表面)的性能。 )和新型a精制没食子酸铝(Ce:GFAG,带有BaSO4反射镜的粗糙表面)检测器。每个闪烁体块的外部尺寸类似于12 x 12 mm,具有12 x 12的0.9 x0.9x 6 mm(3)晶体元素矩阵。这些模块通过光导与1毫米厚的数字硅光电倍增管(dSiPM,DPC-3200-22-44)光耦合。实验是在接近15摄氏度的传感器温度下进行的,Na-22伽马光子的二维位置直方图显示,所有块探测器的所有像素都可以清晰分辨(峰谷比在5.3到11.1的范围内) )。 LYSO(ESR,粗糙),LYSO(BaSO4,粗糙),LYSO(BaSO4,抛光),GAGG(BaSO4,粗糙)和GFAG(BaSO4,粗糙)阵列的平均能量分辨率为测量值分别为半高全宽(FWHM)的11.3%,10.2%,18.7%,10.3%,10.0%和13.2%。 LYSO(ESR,粗糙),LYSO(ESR,抛光),LYSO(BaSO4,粗糙),LYSO(BaSO4,抛光)的重合解析时间(以3 x 3 x 5 mm(3)LYSO晶体为参考), GAGG(BaSO4,粗糙)阵列和GFAG(BaSO4,粗糙)阵列分别为209 ps,222 ps,197 ps,230 ps,321 ps和276 ps。总之,考虑到其性能与以较低成本进行增长之间的权衡,新型GFAG闪烁体可能是未来高分辨率飞行时间(ToF)PET系统的有希望的候选者。

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