Knoess Christof, Siegel Stefan, Smith Anne, Newport Danny, Richerzhagen Norbert, Winkeler Alexandra, Jacobs Andreas, Goble Rhonda N, Graf Rudolf, Wienhard Klaus, Heiss Wolf-Dieter
Max-Planck-Institute for Neurological Research, Gleuelerstrasse 50, 50931 Cologne, Germany.
Eur J Nucl Med Mol Imaging. 2003 May;30(5):737-47. doi: 10.1007/s00259-002-1052-6. Epub 2003 Jan 21.
The microPET R4 scanner is a dedicated positron emission tomograph (PET) for studies of rodents. A number of scanner parameters such as spatial resolution, sensitivity, scatter, and count rate performance were determined in this work, which showed that the microPET R4 is a suitable PET scanner for small animals like mice and rats. In the center of the field of view (FOV) a maximal sensitivity of 43.66 cps/kBq for a centered point source was calculated from a measurement with a germanium-68 line source within an energy widow of 250-750 keV. A spatial resolution of 1.85 mm full-width at half-maximum (FWHM) in the axial direction and 1.66 mm FWHM in the transaxial direction was measured in the center with a 1-mm-diameter sodium-22 point source. Within the inner 20 mm of the FOV the volumetric resolution is better than 15.6 micro l, corresponding to a linear resolution of less than 2.5 mm in all three dimensions. Images of a high-resolution phantom and from mice and rat studies illustrate the good performance of the scanner. A maximal noise equivalent count rate (NECR) was reached at 174 kcps for a mouse phantom and at 93 kcps for a rat phantom (energy window 250-750 keV). Scatter fractions were measured between 0.30 and 0.42 for an energy window of 250-750 keV and phantom diameters similar to mice and rats. A comparison with the microPET P4 model for primates illustrates the gain in sensitivity due to a smaller detector ring diameter but also the changes in NECR.
微型PET R4扫描仪是一款专门用于啮齿动物研究的正电子发射断层扫描仪(PET)。在这项工作中确定了一些扫描仪参数,如空间分辨率、灵敏度、散射和计数率性能,结果表明微型PET R4是一款适用于小鼠和大鼠等小动物的PET扫描仪。在视野(FOV)中心,通过使用锗 - 68线源在250 - 750 keV能量窗口内进行测量,计算出中心点源的最大灵敏度为43.66 cps/kBq。使用直径为1 mm的钠 - 22点源在中心测量得到轴向半高宽(FWHM)为1.85 mm,横向FWHM为1.66 mm的空间分辨率。在FOV内部20 mm范围内,体积分辨率优于15.6微升,对应于所有三个维度上小于2.5 mm的线性分辨率。高分辨率体模以及小鼠和大鼠研究的图像展示了该扫描仪的良好性能。小鼠体模的最大噪声等效计数率(NECR)在174 kcps时达到,大鼠体模在93 kcps时达到(能量窗口250 - 750 keV)。对于250 - 750 keV的能量窗口以及与小鼠和大鼠相似的体模直径,散射分数在0.30至0.42之间测量。与用于灵长类动物的微型PET P4模型进行比较,说明了由于探测器环直径较小而带来的灵敏度提升,以及NECR的变化。