Peng Q, Choong W-S, Vu C, Huber J S, Janecek M, Wilson D, Huesman R H, Qi Jinyi, Zhou Jian, Moses W W
Structural Biology and Imaging Department, Lawrence Berkeley National Laboratory, Berkeley, CA 94720 USA.
Department of Biomedical Engineering, University of California, Davis, Davis, CA 95616 USA.
IEEE Trans Nucl Sci. 2015 Feb;62(1):111-119. doi: 10.1109/TNS.2014.2375176. Epub 2015 Feb 6.
We have constructed and characterized a time-of-flight Positron Emission Tomography (TOF PET) camera called the Tachyon. The Tachyon is a single-ring Lutetium Oxyorthosilicate (LSO) based camera designed to obtain significantly better timing resolution than the ~ 550 ps found in present commercial TOF cameras, in order to quantify the benefit of improved TOF resolution for clinically relevant tasks. The Tachyon's detector module is optimized for timing by coupling the 6.15 × 25 mm side of 6.15 × 6.15 × 25 mm LSO scintillator crystals onto a 1-inch diameter Hamamatsu R-9800 PMT with a super-bialkali photocathode. We characterized the camera according to the NEMA NU 2-2012 standard, measuring the energy resolution, timing resolution, spatial resolution, noise equivalent count rates and sensitivity. The Tachyon achieved a coincidence timing resolution of 314 ps +/- ps FWHM over all crystal-crystal combinations. Experiments were performed with the NEMA body phantom to assess the imaging performance improvement over non-TOF PET. The results show that at a matched contrast, incorporating 314 ps TOF reduces the standard deviation of the contrast by a factor of about 2.3.
我们构建并表征了一款名为Tachyon的飞行时间正电子发射断层扫描仪(TOF PET)。Tachyon是一款基于单环正硅酸镥(LSO)的相机,旨在获得比目前商用TOF相机约550皮秒显著更好的时间分辨率,以便量化改善的TOF分辨率对临床相关任务的益处。Tachyon的探测器模块通过将6.15×6.15×25毫米LSO闪烁晶体6.15×25毫米的侧面耦合到一个直径1英寸、带有超双碱光电阴极的滨松R-9800光电倍增管上,实现了时间优化。我们根据NEMA NU 2-2012标准对该相机进行了表征,测量了能量分辨率、时间分辨率、空间分辨率、噪声等效计数率和灵敏度。Tachyon在所有晶体-晶体组合上实现了314皮秒±皮秒半高宽的符合时间分辨率。使用NEMA体模进行了实验,以评估与非TOF PET相比成像性能的改善情况。结果表明,在匹配对比度的情况下,纳入314皮秒的TOF可将对比度的标准差降低约2.3倍。