Department of Radiology, University of Pennsylvania, Philadelphia, United States of America.
Phys Med Biol. 2023 Apr 19;68(9):095007. doi: 10.1088/1361-6560/acc722.
This work evaluated the updated PennPET Explorer total-body (TB) PET scanner, which was extended to 6 rings with updated readout firmware to achieve a 142 cm axial field of view (AFOV) without 7.6 cm inter-ring axial gaps.National Electrical Manufacturers Association (NEMA) NU 2-2018 measurements were performed with modifications including longer phantoms for sensitivity and count-rate measurements and additional positions for spatial resolution and image quality. A long uniform phantom and the clinical trials network (CTN) phantom were also used.The total sensitivity increased to 140 kcps MBqfor a 70 cm line, a gain of 1.8x compared to the same system with axial gaps; an additional 47% increase in total counts was observed with a 142 cm line at the same activity per cm. The noise equivalent count rate (NECR) increased by 1.8x without axial gaps. The peak NECR is 1550 kcps at 25 kBq ccfor a 140 cm phantom; due to increased randoms, the NECR is lower than with a 70 cm phantom, for which NECR is 2156 kcps ccat 25 kBq ccand continues increasing. The time-of-flight resolution is 250 ps, increasing by <10 ps at the highest activity. The axial spatial resolution degrades by 0.6 mm near the center of the AFOV, compared to 4 mm resolution near the end. The NEMA image quality phantom showed consistent contrast recovery throughout the AFOV. A long uniform phantom demonstrated axial uniformity of uptake and noise, and the CTN phantom demonstrated quantitative accuracy for bothF andZr.. The performance evaluation of the updated PennPET Explorer demonstrates significant gains compared to conventional scanners and shows where the current NEMA standard needs to be updated for TB-PET systems. The comparisons of systems with and without inter-ring gaps demonstrate the performance trade-offs of a more cost-effective TB-PET system with incomplete detector coverage.
这项工作评估了更新后的 PennPET Explorer 全身(TB)PET 扫描仪,该扫描仪扩展到 6 个环,采用更新的读出固件,在不增加 7.6 厘米的环间轴向间隙的情况下实现 142 厘米的轴向视野(AFOV)。采用包括更长的体模进行灵敏度和计数率测量的修改以及用于空间分辨率和图像质量的附加位置的方式,进行了美国电器制造商协会(NEMA)NU 2-2018 测量。还使用了长均匀体模和临床试验网络(CTN)体模。对于 70 厘米的线,总灵敏度增加到 140 kcps MBq,与具有轴向间隙的相同系统相比增益为 1.8x;在相同的每厘米活动水平下,观察到总计数增加了 47%。无轴向间隙时,噪声等效计数率(NECR)增加了 1.8x。在 25 kBq cc 时,140 厘米体模的峰值 NECR 为 1550 kcps;由于随机增加,NECR 低于 70 厘米体模,后者的 NECR 为 2156 kcps ccat 25 kBq cc 并继续增加。飞行时间分辨率为 250 ps,在最高活性下增加 <10 ps。轴向空间分辨率在 AFOV 的中心附近降低 0.6 毫米,而在末端附近为 4 毫米分辨率。NEMA 图像质量体模显示整个 AFOV 内的对比恢复一致。长均匀体模显示出摄取和噪声的轴向均匀性,而 CTN 体模显示出两者的定量准确性F和Zr。更新后的 PennPET Explorer 的性能评估显示与传统扫描仪相比有显著提高,并表明当前 NEMA 标准需要更新 TB-PET 系统。有和没有环间间隙的系统比较展示了具有不完全探测器覆盖范围的更具成本效益的 TB-PET 系统的性能权衡。