Wu H M, Hoh C K, Choi Y, Schelbert H R, Hawkins R A, Phelps M E, Huang S C
Department of Molecular and Medical Pharmacology, UCLA School of Medicine, 90095-6948, USA.
J Nucl Med. 1995 Sep;36(9):1714-22.
Arterial sampling in dynamic PET studies can be eliminated by using left ventricular or aortic time-activity curves (TAC) obtained from user drawn regions of interest (ROIs) after appropriate spillover correction. In this study, we evaluated the feasibility of extracting the "pure" arterial TAC from dynamic PET images using factor analysis of dynamic structures (FADS).
Computer simulations were used to study the performance of the FADS algorithm with positivity constraints. Ten canine 13N-ammonia and two human FDG-PET dynamic studies were used to extract the blood TACs from FADS. Plasma samples and compartmental model fittings were used to validate the accuracy of the FADS-generated blood factors.
We found that FADS with positivity constraints was sufficient to extract the blood factor from the composite dynamic images. The "pure" blood-pool TACs that matched well with the arterialized well counter measurements were generated from FADS in the canine and human studies.
FADS has the potential to accurately extract "pure" blood TAC from dynamic PET images, allowing reliable quantitation of biological information from PET studies without blood sampling, ROI drawing or spillover correction.
在动态PET研究中,通过在适当的溢出校正后使用从用户绘制的感兴趣区域(ROI)获得的左心室或主动脉时间-活度曲线(TAC),可以消除动脉采样。在本研究中,我们评估了使用动态结构因子分析(FADS)从动态PET图像中提取“纯”动脉TAC的可行性。
使用计算机模拟研究具有阳性约束的FADS算法的性能。使用十只犬的13N-氨和两项人体FDG-PET动态研究从FADS中提取血液TAC。使用血浆样本和房室模型拟合来验证FADS生成的血液因子的准确性。
我们发现具有阳性约束的FADS足以从复合动态图像中提取血液因子。在犬类和人体研究中,FADS生成了与动脉化井计数器测量结果匹配良好的“纯”血池TAC。
FADS有潜力从动态PET图像中准确提取“纯”血液TAC,无需采血、绘制ROI或进行溢出校正即可可靠地定量PET研究中的生物信息。