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Imaging performance of LabPET APD-based digital PET scanners for pre-clinical research

机译:基于LabPET APD的数字PET扫描仪的成像性能,用于临床前研究

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摘要

The LabPET is an avalanche photodiode (APD) based digital PET scanner with quasi-individual detector read-out and highly parallel electronic architecture for high-performance in vivo molecular imaging of small animals. The scanner is based on LYSO and LGSO scintillation crystals (2×2×12/14 mm 3), assembled side-by-side in phoswich pairs read out by an APD. High spatial resolution is achieved through the individual and independent read-out of an individual APD detector for recording impinging annihilation photons. The LabPET exists in three versions, LabPET4 (3.75 cm axial length), LabPET8 (7.5 cm axial length) and LabPET12 (11.4 cm axial length). This paper focuses on the systematic characterization of the three LabPET versions using two different energy window settings to implement a high-efficiency mode (250-650 keV) and a high-resolution mode (350-650 keV) in the most suitable operating conditions. Prior to measurements, a global timing alignment of the scanners and optimization of the APD operating bias have been carried out. Characteristics such as spatial resolution, absolute sensitivity, count rate performance and image quality have been thoroughly investigated following the NEMA NU 4-2008 protocol. Phantom and small animal images were acquired to assess the scanners' suitability for the most demanding imaging tasks in preclinical biomedical research. The three systems achieve the same radial FBP spatial resolution at 5 mm from the field-of-view center: 1.65/3.40 mm (FWHM/FWTM) for an energy threshold of 250 keV and 1.51/2.97 mm for an energy threshold of 350 keV. The absolute sensitivity for an energy window of 250-650 keV is 1.4%/2.6%/4.3% for LabPET4/8/12, respectively. The best count rate performance peaking at 362 kcps is achieved by the LabPET12 with an energy window of 250-650 keV and a mouse phantom (2.5 cm diameter) at an activity of 2.4 MBq ml-1. With the same phantom, the scatter fraction for all scanners is about 17% for an energy threshold of 250 keV and 10% for an energy threshold of 350 keV. The results obtained with two energy window settings confirm the relevance of high-efficiency and high-resolution operating modes to take full advantage of the imaging capabilities of the LabPET scanners for molecular imaging applications.
机译:LabPET是基于雪崩光电二极管(APD)的数字PET扫描仪,具有准个人检测器读数和高度并行的电子体系结构,可对小动物进行高效的体内分子成像。扫描仪基于LYSO和LGSO闪烁晶体(2×2×12/14 mm 3),并以APD读出的磷光体对并排组装。通过单独的和独立的单个APD检测器读数来实现高空间分辨率,该APD检测器用于记录入射的ni灭光子。 LabPET有三种版本,LabPET4(轴向长度为3.75厘米),LabPET8(轴向长度为7.5厘米)和LabPET12(轴向长度为11.4厘米)。本文着重于使用两种不同的能量窗口设置对三种LabPET版本进行系统表征,以在最适合的工作条件下实现高效率模式(250-650 keV)和高分辨率模式(350-650 keV)。在测量之前,已经进行了扫描仪的整体定时对准和APD操作偏置的优化。根据NEMA NU 4-2008协议,已经对诸如空间分辨率,绝对灵敏度,计数率性能和图像质量等特性进行了彻底研究。采集了幻影和小动物图像,以评估扫描仪对临床前生物医学研究中最苛刻的成像任务的适用性。这三个系统在距视场中心5 mm处达到相同的径向FBP空间分辨率:对于250 keV的能量阈值,为1.65 / 3.40 mm(FWHM / FWTM);对于350 keV的能量阈值,为1.51 / 2.97 mm 。对于LabPET4 / 8/12,能量窗口为250-650 keV的绝对灵敏度分别为1.4%/ 2.6%/ 4.3%。 LabPET12具有250-650 keV的能量窗口和在2.4 MBq ml-1的活度下的小鼠幻影(直径为2.5 cm的直径),在362 kcps处达到了最佳计数率性能峰值。使用相同的体模,对于250 keV的能量阈值,所有扫描仪的散射率约为17%,对于350 keV的能量阈值,散射率约为10%。通过两种能量窗口设置获得的结果证实了高效和高分辨率操作模式的重要性,以充分利用LabPET扫描仪在分子成像应用中的成像能力。

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