Omidvari Negar, Cabello Jorge, Topping Geoffrey, Schneider Florian R, Paul Stephan, Schwaiger Markus, Ziegler Sibylle I
Department of Nuclear Medicine, Klinikum rechts der Isar, Technical University of Munich, Ismaninger Str. 22, 81675 Munich, Germany.
Phys Med Biol. 2017 Nov 1;62(22):8671-8692. doi: 10.1088/1361-6560/aa910d.
MADPET4 is the first small animal PET insert with two layers of individually read out crystals in combination with silicon photomultiplier technology. It has a novel detector arrangement, in which all crystals face the center of field of view transaxially. In this work, the PET performance of MADPET4 was evaluated and compared to other preclinical PET scanners using the NEMA NU 4 measurements, followed by imaging a mouse-size hot-rod resolution phantom and two in vivo simultaneous PET/MRI scans in a 7 T MRI scanner. The insert had a peak sensitivity of 0.49%, using an energy threshold of 350 keV. A uniform transaxial resolution was obtained up to 15 mm radial offset from the axial center, using filtered back-projection with single-slice rebinning. The measured average radial and tangential resolutions (FWHM) were 1.38 mm and 1.39 mm, respectively. The 1.2 mm rods were separable in the hot-rod phantom using an iterative image reconstruction algorithm. The scatter fraction was 7.3% and peak noise equivalent count rate was 15.5 kcps at 65.1 MBq of activity. The FDG uptake in a mouse heart and brain were visible in the two in vivo simultaneous PET/MRI scans without applying image corrections. In conclusion, the insert demonstrated a good overall performance and can be used for small animal multi-modal research applications.
MADPET4是首款采用两层独立读出晶体并结合硅光电倍增管技术的小动物PET插入件。它具有新颖的探测器布局,其中所有晶体在轴向横向上都面向视野中心。在这项工作中,使用NEMA NU 4测量方法评估了MADPET4的PET性能,并与其他临床前PET扫描仪进行了比较,随后对小鼠大小的热棒分辨率体模进行成像,并在7T MRI扫描仪中进行了两次体内同步PET/MRI扫描。该插入件的峰值灵敏度为0.49%,能量阈值为350keV。使用单切片重排的滤波反投影方法,在距轴向中心15mm的径向偏移范围内获得了均匀的轴向分辨率。测得的平均径向和切向分辨率(半高宽)分别为1.38mm和1.39mm。使用迭代图像重建算法,在热棒体模中可以分辨出1.2mm的棒。在65.1MBq的活度下,散射分数为7.3%,峰值噪声等效计数率为15.5kcps。在两次体内同步PET/MRI扫描中,未进行图像校正的情况下,小鼠心脏和大脑中的FDG摄取可见。总之,该插入件展示了良好的整体性能,可用于小动物多模态研究应用。