Choi Y, Huang S C, Hawkins R A, Kuhle W G, Dahlbom M, Hoh C K, Czernin J, Phelps M E, Schelbert H R
Department of Radiological Sciences, UCLA School of Medicine 90024-1721.
J Nucl Med. 1993 Mar;34(3):488-97.
The utility of Patlak graphical analysis was investigated for quantification of regional myocardial blood flow (MBF) and for generating parametric images of MBF with 13N-ammonia and dynamic PET imaging in dogs and humans. MBF was estimated by a two-compartment model fit of the initial 2 min of the kinetic data and by Patlak graphical analysis of the initial 2, 3, or 4 min of data. In 11 dog studies, MBF by compartmental model fitting linearly correlated with MBF by microspheres (correlation coefficient (r) = 0.99, slope = 0.92) and by Patlak graphical analysis (r = 0.99, slope = 0.90). In 10 normal human studies, MBF obtained by the Patlak graphical analysis agreed well with MBF obtained by the compartmental model fitting (r = 0.96, slope = 1.04). Good agreement of the MBF estimates was also observed in 10 coronary artery disease patient studies (r = 0.96). Patlak graphical analysis permitted generation of parametric images of MBF. The parametric images of MBF, in units of ml/min/g, are of good image quality and have relatively low noise levels. We conclude that regional MBF can be noninvasively and conveniently measured with dynamic 13N-ammonia PET using either a two-compartment model or Patlak graphical analysis. MBF parametric images generated with the Patlak graphical analysis both map the distribution and quantitate the magnitude of myocardial perfusion abnormalities.
研究了Patlak图形分析在定量评估局部心肌血流量(MBF)以及利用13N-氨和动态正电子发射断层扫描(PET)成像生成狗和人类的MBF参数图像方面的效用。通过对动力学数据初始2分钟进行双室模型拟合以及对初始2、3或4分钟的数据进行Patlak图形分析来估计MBF。在11项狗的研究中,通过双室模型拟合得到的MBF与通过微球法得到的MBF呈线性相关(相关系数(r)=0.99,斜率=0.92),与通过Patlak图形分析得到的MBF也呈线性相关(r = 0.99,斜率 = 0.90)。在10项正常人类研究中,通过Patlak图形分析获得的MBF与通过双室模型拟合获得的MBF吻合良好(r = 0.96,斜率 = 1.04)。在10项冠状动脉疾病患者研究中也观察到MBF估计值的良好一致性(r = 0.96)。Patlak图形分析允许生成MBF参数图像。以ml/min/g为单位的MBF参数图像具有良好的图像质量且噪声水平相对较低。我们得出结论,使用双室模型或Patlak图形分析,通过动态13N-氨PET可以无创且方便地测量局部MBF。通过Patlak图形分析生成的MBF参数图像既能描绘心肌灌注异常的分布,又能对其大小进行定量。