University of Tennessee Medical Center, Knoxville, Tennessee, USA.
J Nucl Med. 2010 Feb;51(2):237-45. doi: 10.2967/jnumed.109.068098. Epub 2010 Jan 15.
The introduction of fast scintillators with good stopping power for 511-keV photons has renewed interest in time-of-flight (TOF) PET. The ability to measure the difference between the arrival times of a pair of photons originating from positron annihilation improves the image signal-to-noise ratio (SNR). The level of improvement depends upon the extent and distribution of the positron activity and the time resolution of the PET scanner. While specific estimates can be made for phantom imaging, the impact of TOF PET is more difficult to quantify in clinical situations. The results presented here quantify the benefit of TOF in a challenging phantom experiment and then assess both qualitatively and quantitatively the impact of incorporating TOF information into the reconstruction of clinical studies. A clear correlation between patient body mass index and gain in SNR was observed in this study involving 100 oncology patient studies, with a gain due to TOF ranging from 1.1 to 1.8, which is consistent with the 590-ps time resolution of the TOF PET scanner. The visual comparison of TOF and non-TOF images performed by two nuclear medicine physicians confirmed the advantages of incorporating TOF into the reconstruction, advantages that include better definition of small lesions and image details, improved uniformity, and noise reduction.
快闪烁体具有良好的 511keV 光子阻止能力,这重新激发了人们对飞行时间(TOF)PET 的兴趣。测量一对源于正电子湮没的光子到达时间差的能力提高了图像的信噪比(SNR)。改善的程度取决于正电子活性的程度和分布以及 PET 扫描仪的时间分辨率。虽然可以对体模成像进行具体估计,但在临床情况下,更难以量化 TOF PET 的影响。本文通过一项挑战性的体模实验量化了 TOF 的益处,然后定性和定量地评估了将 TOF 信息纳入临床研究重建的影响。在这项涉及 100 项肿瘤学患者研究的研究中,观察到患者体重指数与 SNR 增益之间存在明显的相关性,由于 TOF 的增益范围为 1.1 至 1.8,这与 TOF PET 扫描仪的 590 皮秒时间分辨率一致。两位核医学医师对 TOF 和非 TOF 图像的视觉比较证实了将 TOF 纳入重建的优势,这些优势包括提高了对小病灶和图像细节的定义、改善了均匀性和降低了噪声。