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An Assessment of the Impact of Incorporating Time-of-Flight (TOF) Information Into Clinical PET/CT Imaging

机译:将飞行时间(TOF)信息纳入临床PET / CT成像的影响的评估

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摘要

The introduction of fast scintillators with good stopping power for 511 keV photons has renewed interest in Time-of-Flight Positron Emission Tomography (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 assesses both qualitatively and quantitatively the impact of incorporating TOF information into the reconstruction of clinical studies. A clear correlation between patient body mass index (BMI) and gain in SNR was observed in this study involving 100 oncology patient studies, with a gain due to TOF ranging from 1.2 to 2, 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.
机译:对511 keV光子具有良好制动力的快速闪烁体的引入,引起了人们对飞行时间正电子发射断层扫描(TOF-PET)的兴趣。测量源自正电子an灭的一对光子到达时间之间的差异的能力可以改善图像信噪比(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。尽管可以对幻像成像进行特定估计,但在临床情况下更难量化TOF-PET的影响。此处呈现的结果量化了TOF在具有挑战性的幻象实验中的益处,然后定性和定量评估了将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(BMI)与SNR增益之间存在明显的相关性,TOF的增益范围为1.2至2,这与TOF的590 ps时间分辨率一致-PET扫描仪。由两名核医学医师进行的TOF和非TOF图像的视觉比较证实了将TOF整合到重建中的优点,包括更好地定义小病变和图像细节,改善了均匀性以及降低了噪音。

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