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Initial PET performance evaluation of a preclinical insert for PET/MRI with digital SiPM technology

机译:利用数字SiPM技术对用于PET / MRI的临床前插入物的初步PET性能评估

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摘要

Hyperion-IID is a positron emission tomography (PET) insert which allows simultaneous operation in a clinical magnetic resonance imaging (MRI) scanner. To read out the scintillation light of the employed lutetium yttrium orthosilicate crystal arrays with a pitch of 1 mm and 12 mm in height, digital silicon photomultipliers (DPC 3200-22, Philips Digital Photon Counting) (DPC) are used. The basic PET performance in terms of energy resolution, coincidence resolution time (CRT) and sensitivity as a function of the operating parameters, such as the operating temperature, the applied overvoltage, activity and configuration parameters of the DPCs, has been evaluated at system level. The measured energy resolution did not show a large dependency on the selected parameters and is in the range of 12.4%-12.9% for low activity, degrading to similar to 13.6% at an activity of similar to 100 MBq. The CRT strongly depends on the selected trigger scheme (trig) of the DPCs, and we measured approximately 260 ps, 440 ps, 550 ps and 1300 ps for trig 1-4, respectively. The trues sensitivity for a NEMA NU 4 mouse-sized scatter phantom with a 70 mm long tube of activity was dependent on the operating parameters and was determined to be 0.4%-1.4% at low activity. The random fraction stayed below 5% at activity up to 100 MBq and the scatter fraction was evaluated as similar to 6% for an energy window of 411 keV-561 keV and similar to 16% for 250 keV-625 keV. Furthermore, we performed imaging experiments using a mouse-sized hot-rod phantom and a large rabbit-sized phantom. In 2D slices of the reconstructed mouse-sized hot-rod phantom (empty set = 28 mm), the rods were distinguishable from each other down to a rod size of 0.8 mm. There was no benefit from the better CRT of trig 1 over trig 3, where in the larger rabbit-sized phantom (empty set = 114 mm) we were able to show a clear improvement in image quality using the time-of-flight information. The findings will allow system architects-aiming at a similar detector design using DPCs-to make predictions about the design requirements and the performance that can be expected.
机译:Hyperion-IID是一种正电子发射断层扫描(PET)插件,可在临床磁共振成像(MRI)扫描仪中同时进行操作。为了读出间距为1 mm和12 mm高的所用employed正硅酸钇钇晶体阵列的闪烁光,使用了数字硅光电倍增管(DPC 3200-22,Philips Digital Photon Counting)(DPC)。已在系统级别评估了基本PET性能,包括能量分辨率,重合分辨时间(CRT)和灵敏度等操作参数的函数,例如操作温度,施加的过电压,DPC的活动性和配置参数等功能。测得的能量分辨率对所选参数没有很大的依赖性,对于低活性,其能量分辨率在12.4%-12.9%的范围内,在类似于100 MBq的活性下,降解为类似于13.6%。 CRT强烈依赖于DPC的选定触发方案(trig),对于trig 1-4,我们分别测得大约260 ps,440 ps,550 ps和1300 ps。具有70 mm长的活动管的NEMA NU 4小鼠大小散布模型的真实灵敏度取决于操作参数,在低活动度下确定为0.4%-1.4%。活性分数高达100 MBq时,随机分数保持在5%以下,对于411 keV-561 keV的能量窗口,散射分数评估为接近6%,而对于250 keV-625 keV的能量窗口评估为16%。此外,我们使用鼠标大小的热棒幻像和大兔子大小的幻像进行了成像实验。在重建的鼠标大小的热棒幻像(空置= 28 mm)的2D切片中,小棒彼此可分辨到小至0.8 mm的棒大小。 Trig 1的CRT优于Trig 3的CRT没有好处,在更大的兔子模型中(空置= 114 mm),我们能够使用飞行时间信息显示出明显的图像质量改善。这些发现将使系统设计师可以针对使用DPC的类似探测器设计进行预测,以预测设计要求和预期性能。

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