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October 5, 2025Applied Sciences2 citationsOpen Access

Mapping 18F-FDG Positron Emission Tomography Uptake in the Aortic Wall and Thrombus: Validation and Reproducibility

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MBMireia Bragulat-ArévaloMFMarta Ferrer‐CornetLDLydia Dux‐Santoy

Key Points

  • Reproducible and accurate 18F-FDG uptake maps can be generated for assessing vascular inflammation.
  • The study achieved a 98.4% feasibility rate for patch-wise PET analysis in 82 patients with aortic aneurysms.
  • Inter-observer reliability was high, with Dice scores of 0.89 for lumen and 0.82 for thrombus segmentations.
  • Best accuracy and reproducibility balance occurred at a wall thickness of 6 mm, enhancing clinical assessment.

Abstract

18F-fluorodeoxyglucose (18F-FDG) positron emission tomography (PET) could be useful to assess inflammation of the aortic wall, a potential early indicator of aneurysm formation. Nonetheless, its current clinical assessment presents several limitations. The study aimed to develop and validate an innovative technique to obtain thoraco-abdominal aortic wall PET uptake maps. PET/magnetic resonance (MR) was acquired in 82 patients with aortic aneurysms. The thoraco-abdominal aorta was segmented and expanded inward and outward (by 1 to 5 mm) and discretized into 80 standardized wall patches. Standard uptake values (SUV) were calculated for each patch and the thrombus. For inter-observer reproducibility, a second blinded observer analyzed 26 random patients. Validation against manual expert measurements was performed. The feasibility of the patch-wise PET analysis was 98.4%. Inter-observer Dice scores were 0.89 for lumen and 0.82 for thrombus segmentations. SUV mapping presented excellent reproducibility, modestly improving with wall thickness (ICC 0.950 to 0.966), while its agreement with expert measurements improved with thinner walls (ICC 0.848 to 0.755). An optimal balance between reproducibility and accuracy was obtained at 6 mm wall thickness. Reproducible and accurate thoraco-abdominal aortic wall 18F-FDG uptake maps can be obtained from PET/MR, potentially facilitating the exploration of local factors associated with vascular inflammation.

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Cite This Study

Bragulat-Arévalo et al. (2025) studied this question.

synapsesocial.com/papers/68e24e60d6d66a53c247343dhttps://doi.org/10.3390/app151910685
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