Image Quality and Quantitative PET Parameters of Low-Dose [ 18 F]FDG PET in a Long Axial Field-of-View PET/CT Scanner.
Eduardo CalderónFabian P SchmidtWenhong LanSalvador Guillermo Castaneda-VegaAndreas Stefan BrendlinNils F TrautweinHelmut DittmannChristian Peter la FougèreLena Sophie KieferPublished in: Diagnostics (Basel, Switzerland) (2023)
PET/CT scanners with a long axial field-of-view (LAFOV) provide increased sensitivity, enabling the adjustment of imaging parameters by reducing the injected activity or shortening the acquisition time. This study aimed to evaluate the limitations of reduced [ 18 F]FDG activity doses on image quality, lesion detectability, and the quantification of lesion uptake in the Biograph Vision Quadra, as well as to assess the benefits of the recently introduced ultra-high sensitivity mode in a clinical setting. A number of 26 patients who underwent [ 18 F]FDG-PET/CT (3.0 MBq/kg, 5 min scan time) were included in this analysis. The PET raw data was rebinned for shorter frame durations to simulate 5 min scans with lower activities in the high sensitivity (HS) and ultra-high sensitivity (UHS) modes. Image quality, noise, and lesion detectability ( n = 82) were assessed using a 5-point Likert scale. The coefficient of variation (CoV), signal-to-noise ratio (SNR), tumor-to-background ratio (TBR), and standardized uptake values (SUV) including SUV mean , SUV max , and SUV peak were evaluated. Subjective image ratings were generally superior in UHS compared to the HS mode. At 0.5 MBq/kg, lesion detectability decreased to 95% (HS) and to 98% (UHS). SNR was comparable at 1.0 MBq/kg in HS (5.7 ± 0.6) and 0.5 MBq/kg in UHS (5.5 ± 0.5). With lower doses, there were negligible reductions in SUV mean and SUV peak , whereas SUV max increased steadily. Reducing the [ 18 F]FDG activity to 1.0 MBq/kg (HS/UHS) in a LAFOV PET/CT provides diagnostic image quality without statistically significant changes in the uptake parameters. The UHS mode improves image quality, noise, and lesion detectability compared to the HS mode.
Keyphrases
- image quality
- pet ct
- computed tomography
- positron emission tomography
- dual energy
- high resolution
- low dose
- air pollution
- ejection fraction
- newly diagnosed
- sars cov
- deep learning
- prognostic factors
- chronic kidney disease
- fluorescence imaging
- high dose
- magnetic resonance
- mass spectrometry
- diffusion weighted imaging
- photodynamic therapy
- respiratory syndrome coronavirus