首页> 外文期刊>Physics in medicine and biology. >A compact and high sensitivity positron detector using dual-layer thin GSO scintillators for a small animal PET blood sampling system.
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A compact and high sensitivity positron detector using dual-layer thin GSO scintillators for a small animal PET blood sampling system.

机译:使用双层薄GSO闪烁器的紧凑型高灵敏度正电子检测器,用于小型动物PET血液采样系统。

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摘要

For quantitative measurements of small animals such as mice or rats, a compact and high sensitivity continuous blood sampling detector is required because their blood sampling volume is limited. For this purpose we have developed and tested a new positron detector. The positron detector uses a pair of dual-layer thin gadolinium orthosilicate (GSO) scintillators with different decay times. The front layer detects the positron and the background gamma photons, and the back layer detects the background gamma photons. By subtracting the count rate of the latter from that of the former, the count rate of the positrons can be estimated. The GSO for the front layer has a Ce concentration of 1.5 mol% (decay time of 35 ns), and that for the back layer has a Ce concentration of 0.5 mol% (decay time of 60 ns). By using the pulse shape analysis, the count rate of these two GSOs can be discriminated. The thickness is 0.5 mm, which is thick enough to detect positrons while minimizing the detection of the background gamma photons. These two types of thin GSOs were optically coupled to each other and connected to a metal photomultiplier tube (PMT) through triangular light guides. The signal from the PMT was digitized by 100 MHz free-running A-D converters in the data acquisition system and digitally integrated at two different integration times for the pulse shape analysis. We obtained good separation of the pulse shape distributions of these two GSOs. The energy threshold level was decreased to 80 keV, increasing the sensitivity of the detector. The sensitivity of a small diameter plastic tube was 8.6% and 24% for the F-18 and C-11 positrons, respectively. The count rate performance was linear up to approximately 50 kcps. The background counts from the gamma photons could be precisely corrected. The time-activity curve (TAC) of the rat artery blood was successfully obtained and showed a good correlation with that measured using a well counter. With these results, we confirmed that the developed blood sampling detector is promising for quantitative measurement for an animal positron emission tomography system.
机译:为了定量测量诸如小鼠或大鼠等小型动物,需要一种紧凑且高灵敏度的连续采血检测器,因为它们的采血量有限。为此,我们开发并测试了一种新的正电子探测器。正电子探测器使用一对具有不同衰减时间的双层薄原硅酸((GSO)闪烁体。前层检测正电子和背景伽马光子,后层检测背景伽马光子。通过从前者的计数率中减去后者的计数率,可以估算出正电子的计数率。前层的GSO的Ce浓度为1.5 mol%(衰减时间为35 ns),而后层的GSO的Ce浓度为0.5 mol%(衰减时间为60 ns)。通过使用脉冲形状分析,可以区分这两个GSO的计数率。厚度为0.5毫米,该厚度足以检测正电子,同时最小化背景伽马光子的检测。这两种类型的薄GSO彼此光学耦合,并通过三角光导连接到金属光电倍增管(PMT)。来自PMT的信号由数据采集系统中的100 MHz自由运行A-D转换器数字化,并在两个不同的积分时间进行数字积分,以进行脉冲形状分析。我们获得了这两个GSO的脉冲形状分布的良好分离。能量阈值水平降低到80 keV,从而提高了检测器的灵敏度。 F-18和C-11正电子的小直径塑料管的灵敏度分别为8.6%和24%。计数率性能线性高达大约50 kcps。可以精确地校正来自伽马光子的背景计数。成功获得了大鼠动脉血液的时间-活动曲线(TAC),并显示出与使用井计数仪测量的时间-活动曲线具有良好的相关性。根据这些结果,我们确认开发的血液采样检测器有望用于动物正电子发射断层扫描系统的定量测量。

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