Naganawa Mika, Kimura Yuichi, Ishii Kenji, Oda Keiichi, Ishiwata Kiichi, Matani Ayumu
Department of Information Processing, Graduate School of Information Science, Nara Institute of Science and Technology, Nara 630-0192, Japan.
IEEE Trans Biomed Eng. 2005 Feb;52(2):201-10. doi: 10.1109/TBME.2004.840193.
A compartment model has been used for kinetic analysis of dynamic positron emission tomography (PET) data [e.g., 2-deoxy-2-18F-fluoro-D-glucose (FDG)]. The input function of the model [the plasma time-activity curve (pTAC)] was obtained by serial arterial blood sampling. It is of clinical interest to develop a method for PET studies that estimates the pTAC without needing serial arterial blood sampling. For this purpose, we propose a new method to extract the pTAC from the dynamic brain PET images using a modified independent component analysis [extraction of the pTAC using independent component analysis (EPICA). Source codes of EPICA are freely available at http://www5f.biglobe.ne.jp/ũkimura/Software/top.html]. EPICA performs the appropriate preprocessing and independent component analysis (ICA) using an objective function that takes the various properties of the pTAC into account. After validation of EPICA by computer simulation, EPICA was applied to human brain FDG-PET studies. The results imply that the EPICA-estimated pTAC was similar to the actual measured pTAC, and that the estimated blood volume image was highly correlated with the blood volume image measured using 15O-CO inhalation. These results demonstrated that EPICA is useful for extracting the pTAC from dynamic PET images without the necessity of serial arterial blood sampling.
一种房室模型已被用于动态正电子发射断层扫描(PET)数据的动力学分析[例如,2-脱氧-2-¹⁸F-氟-D-葡萄糖(FDG)]。该模型的输入函数[血浆时间-活性曲线(pTAC)]通过连续动脉血采样获得。开发一种无需连续动脉血采样即可估计pTAC的PET研究方法具有临床意义。为此,我们提出了一种使用改进的独立成分分析从动态脑PET图像中提取pTAC的新方法[使用独立成分分析提取pTAC(EPICA)。EPICA的源代码可在http://www5f.biglobe.ne.jp/ũkimura/Software/top.html免费获取]。EPICA使用一个考虑了pTAC各种特性的目标函数进行适当的预处理和独立成分分析(ICA)。通过计算机模拟对EPICA进行验证后,将EPICA应用于人体脑FDG-PET研究。结果表明,EPICA估计的pTAC与实际测量的pTAC相似,并且估计的血容量图像与使用¹⁵O-CO吸入测量的血容量图像高度相关。这些结果表明,EPICA可用于从动态PET图像中提取pTAC,而无需连续动脉血采样。