Published August 1998 | Version v1
Journal article

Assessment of quantitative analysis methods for lung F-18-fluorodeoxyglucose PET

  • 1. College of Medicine, Sungkyunkwan Univ., Seoul (Korea, Republic of)
  • 2. College of Medicine, Hanyang Univ., Seoul (Korea, Republic of)

Description

The purpose of this study was to assess the diagnostic accuracy of various quantitation methods using F-18-fluorodeoxyglucose (EDG) in patients with malignant or benign lung lesion. 22 patients (13 malignant including 5 bronchoalverolar cell cancer; 9 benign lesions including 1 hamartoma and 8 active inflammation) were studied after overnight fasting. We performed dynamic PET imaging for 56 min after injection of 370 MBq (10 mCi) of FDG. Standardized uptake values normalized to patient's body weight and plasma glucose concentration (SUVglu) were calculated. The uptake rate constant of FDG and glucose metabolic rate were quantified using Patlak graphical analysis (Kpat and MRpat), three compartment-five parameter model (K5p, MR5p), and six parameter model taking into account heterogeneity of tumor tissue (K6p, MR6p). Areas under receiver operating characteristic curves (ROC) were calculated for each method. There was no significant difference of rate constant or glucose metabolic rate measured by various quantitation methods between malignant and benign lesions. The area under ROC curve were 0.73 for SUVglu, 0.66 for Kpat, 0.77 for MRpat, 0.71 for K5p, 0.73 for MR5p, 0.70 for K6p, and 0.78 for MR6p. No significant difference of area under the ROC curbe between these methods was observed except the area between Kpat vs. MRpat(p<0.05). Quantitative methods did not improve diagnostic accuracy in comparison with nonkinetic methods. However, the clinical utility of these methods needs to be evaluated further in patients with low pretest likelihood of active inflammation or bronchoalveolar cell carcinoma

Additional details

Publishing Information

Journal Title
Korean Journal of Nuclear Medicine
Journal Volume
32
Journal Issue
4
Series
17 refs, 7 figs, 2 tabs
Journal Page Range
p. 332-343
ISSN
1225-6714