Montgomery Maria Elkjær, Andersen Flemming Littrup, d'Este Sabrina Honoré, Overbeck Nanna, Cramon Per Karkov, Law Ian, Fischer Barbara Malene, Ladefoged Claes Nøhr
Department of Clinical Physiology and Nuclear Medicine, Rigshospitalet, Copenhagen University Hospital, 2100 København, Denmark.
Department of Clinical Medicine, Copenhagen University, 2200 København, Denmark.
Diagnostics (Basel). 2023 Dec 14;13(24):3661. doi: 10.3390/diagnostics13243661.
Recent advancements in PET/CT, including the emergence of long axial field-of-view (LAFOV) PET/CT scanners, have increased PET sensitivity substantially. Consequently, there has been a significant reduction in the required tracer activity, shifting the primary source of patient radiation dose exposure to the attenuation correction (AC) CT scan during PET imaging. This study proposes a parameter-transferred conditional generative adversarial network (PT-cGAN) architecture to generate synthetic CT (sCT) images from non-attenuation corrected (NAC) PET images, with separate networks for [F]FDG and [O]HO tracers. The study includes a total of 1018 subjects ( = 972 [F]FDG, = 46 [O]HO). Testing was performed on the LAFOV scanner for both datasets. Qualitative analysis found no differences in image quality in 30 out of 36 cases in FDG patients, with minor insignificant differences in the remaining 6 cases. Reduced artifacts due to motion between NAC PET and CT were found. For the selected organs, a mean average error of 0.45% was found for the FDG cohort, and that of 3.12% was found for the HO cohort. Simulated low-count images were included in testing, which demonstrated good performance down to 45 s scans. These findings show that the AC of total-body PET is feasible across tracers and in low-count studies and might reduce the artifacts due to motion and metal implants.
PET/CT的最新进展,包括长轴视野(LAFOV)PET/CT扫描仪的出现,显著提高了PET的灵敏度。因此,所需的示踪剂活性大幅降低,使患者辐射剂量暴露的主要来源在PET成像期间转移到衰减校正(AC)CT扫描。本研究提出了一种参数转移条件生成对抗网络(PT-cGAN)架构,用于从非衰减校正(NAC)PET图像生成合成CT(sCT)图像,针对[F]FDG和[O]HO示踪剂使用单独的网络。该研究共纳入1018名受试者(n = 972名[F]FDG受试者,n = 46名[O]HO受试者)。对两个数据集均在LAFOV扫描仪上进行测试。定性分析发现,FDG患者36例中有30例图像质量无差异,其余6例有轻微的不显著差异。发现减少了NAC PET与CT之间因运动产生的伪影。对于选定的器官,FDG队列的平均平均误差为0.45%,HO队列的平均平均误差为3.12%。测试中纳入了模拟低计数图像,结果表明在45秒扫描时性能良好。这些发现表明,全身PET的AC在不同示踪剂和低计数研究中是可行的,并且可能减少因运动和金属植入物产生的伪影。