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Updated: Feb 12, 2026
![Visualization and Quantification of Brown and Beige Adipose Tissues in Mice using [18F]FDG Micro-PET/MR Imaging](/_next/image?url=https%3A%2F%2Fcloudfront.jove.com%2FCDNSource%2Fteasers%2F62460.jpg&w=3840&q=50)
Visualization and Quantification of Brown and Beige Adipose Tissues in Mice using [18F]FDG Micro-PET/MR Imaging
Published on: July 1, 2021
Feasibility Study of 18F-FDG PET Short-Duration Scan in Underweight Patients with Lung Cancer
Hiroaki Sagara1,2,3, Go Akamatsu4, Chikara Mano5
1Department of Radiological Technology, Gunma Prefectural College of Health Sciences, Maebashi, Japan; hsagara@east.ncc.go.jp.
None:
This retrospective study investigated the feasibility of short-duration 18F-FDG PET/CT imaging for underweight patients with lung cancer. Methods: Short-duration imaging conditions were established so that the noise-equivalent count density satisfied the reference level proposed by the Japanese Society of Nuclear Medicine. Results: Scan time could be reduced from 120 to 52 s/bed position (a 57% reduction) by optimizing Bayesian penalized likelihood (Q.Clear) reconstruction parameters using a β of 650 while preserving image noise levels similar to those in standard-duration imaging (β = 350). Although SUVmax decreased under the shorter-scan condition, the change in SUVpeak was approximately -5% for lesions with diameters of more than 20 mm. Conclusion: The acquisition time for 18F-FDG PET for underweight lung cancer patients can be shortened by 57% without compromising image quality. SUVpeak appears to be a reliable, robust quantitative metric for evaluating larger lesions under such conditions.
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