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首页> 外文期刊>Journal of instrumentation: an IOP and SISSA journal >Timing measurements of lutetium based scintillators combined with silicon photomultipliers for TOF-PET system
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Timing measurements of lutetium based scintillators combined with silicon photomultipliers for TOF-PET system

机译:TO基闪烁体与硅光电倍增管结合用于TOF-PET系统的定时测量

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As time-of-flight PET (TOF-PET) gains popularity in clinical diagnostic, the coincidence timing resolution of PET systems becomes more crucial. The most common scintillators for commercial TOF-PET systems are Lu-based ones such as LSO or LYSO for their high light output, high density and fast decay time. Recently, LGSO with 0.025% Ce (LGSO-fast) was developed which has faster decay time than LGSO with Ce concentration of 0.1 mol% (LGSOstandard). Using the LGSO-fast in conjunction with silicon photomultiplier (Si-PM) may improve the timing performance for the development of TOF-PET systems. Consequently, we tested the basic performance of LGSO-fast and coupled them with Si-PMs to measure the coincidence timing resolution using a high bandwidth digital oscilloscope. The performance was also evaluated for LGSO-standard and other Lu-based scintillators such as lutetium fine silicate (LFS) and two types of LYSOs from other manufacturers. The light output was largest for one of the LYSO from one manufacture and smallest for the LYSO from other manufacture. Decay time was fastest for LGSOfast (33.8 ns) and slowest for one of the LYSO (39.9 ns). Coincidence timing resolution for 2.9mm long Lu-based scintillators, LGSO-fast was the best (156.5 ps) and one of the LYSO showed the worst (235.1 ps). For the 20mm long scintillators, coincidence timing resolution was also best for LGSO-fast (273.2 ps) and worst for one of the LYSO (481.8 ps). We conclude that LGSO-fast combined with Si-PM showed best timing performance among measured Lu-based scintillators. Also within the same Lu-based scintillators such as LYSOs, we found that the performance differences were sometimes significant and quality control of the Lu-based scintillator is essential to achieve good performance in PET systems.
机译:随着飞行时间PET(TOF-PET)在临床诊断中的普及,PET系统的同步定时分辨率变得越来越重要。商业TOF-PET系统最常见的闪烁器是基于Lu的闪烁器,例如LSO或LYSO,因为它们具有高光输出,高密度和快速衰减时间的特点。最近,开发了具有0.025%Ce的LGSO(LGSO-fast),其衰变时间比具有0.1 mol%Ce的LGSO(LGSOstandard)具有更快的衰减时间。将LGSO-fast与硅光电倍增管(Si-PM)结合使用可以改善TOF-PET系统开发的时序性能。因此,我们测试了LGSO-fast的基本性能,并将其与Si-PM结合使用高带宽数字示波器测量重合时序分辨率。还对LGSO标准和其他基于Lu的闪烁体(如fine硅酸(LFS)和其他制造商的两种LYSO)进行了性能评估。来自一个制造商的LYSO之一的光输出最大,而来自其他制造商的LYSO的光输出最小。 LGSOfast的衰减时间最快(33.8 ns),而LYSO之一的衰减时间最慢(39.9 ns)。 2.9毫米长的Lu基闪烁体的重合时序分辨率,LGSO快最好(156.5 ps),而LYSO之一显示最差(235.1 ps)。对于20mm长的闪烁体,重合定时分辨率对于LGSO快速(273.2 ps)也是最佳的,而对于LYSO之一(481.8 ps)则最差。我们得出的结论是,LGSO-fast与Si-PM的结合在测得的基于Lu的闪烁体中显示出最佳的计时性能。同样在相同的基于Lu的闪烁体(如LYSO)中,我们发现有时性能差异很大,对基于Lu的闪烁体的质量控制对于在PET系统中实现良好性能至关重要。

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