PET/CT with 18F-Fluordesoxyglucose in patients with suspected endovascular prosthesis infection
C Vigil Díaz1, C Salvat Dávila1, B Fernández Llana1
1Servicio de Medicina Nuclear, Hospital Universitario Central de Asturias, Oviedo, Asturias, España.
Objective:
Infection of large vessel prostheses is a rare but critical complication. The aim of this work is to assess the impact of PET/CT with 18F-Fluordesoxyglucose (PET-FDG) on the diagnosis of infection in our environment.
Material And Methods:
Thirty-five patients (38 scans) were evaluated for suspected prosthetic infection. A qualitative analysis was performed taking into account the distribution of the radiopharmaceutical, categorizing the studies as positive or negative for infection. Those with focal or multifocal deposits along the vascular prosthesis were considered positive, and negative if a homogeneous and diffuse distribution over the whole prosthesis was observed, or a total absence of uptake. A semi-quantitative analysis was performed using SUVmax and average SUV values, and a metabolic index was calculated (SUVmax of the graft / average SUV of the normal vascular pool).
Results:
The PET-FDG study was positive in 20 patients, with a diagnostic accuracy of 84%. The 38 PET-FDG scans performed showed positive capture patterns (focal in 6, multifocal in 15, diffuse in 4) and negative pattern in the remaining 13. The sensitivity, specificity, positive and negative predictive values obtained for the PET-FDG were 95%, 89%, 90% and 94%, and for the AngioTC study 50%, 73%, 73% and 50%, respectively. The area values under the ROC curve were as follows: for the AngioTC 0.642 (not significant), and for the SUVmax values of 0.925 (p<0.005), average SUV of 0.922 (p<0.005) and for the metabolic index of 0.917 (p<0.005).
Conclusions:
The PET-FDG proves to be a tool with high diagnostic accuracy in the infection of vascular prosthesis, both visual analysis according to patterns and semi-quantitative.
Insights
Positron Emission Tomography/Computed Tomography (PET-FDG) effectively diagnoses vascular prosthesis infections. This imaging technique shows high accuracy, aiding in critical clinical decisions for prosthetic joint infections.
Area of Science:
- Nuclear Medicine
- Radiology
- Vascular Surgery
Background:
- Infection of large vessel prostheses is a rare but critical complication.
- Accurate diagnosis is essential for timely and effective treatment.
Purpose of the Study:
- To assess the diagnostic impact of 18F-Fluordesoxyglucose Positron Emission Tomography/Computed Tomography (PET-FDG) for prosthetic vascular graft infections.
Main Methods:
- Evaluated 35 patients (38 scans) with suspected prosthetic infection using PET-FDG.
- Performed qualitative analysis of radiopharmaceutical distribution (focal, multifocal, diffuse) and semi-quantitative analysis (SUVmax, average SUV, metabolic index).
Main Results:
- PET-FDG demonstrated 84% diagnostic accuracy, with sensitivity of 95% and specificity of 89%.
- Qualitative and semi-quantitative analyses showed high predictive values and significant ROC curve areas (p<0.005).
- Angiographic Computed Tomography (Angio-CT) showed lower diagnostic performance.
Conclusions:
- PET-FDG is a highly accurate tool for diagnosing vascular prosthesis infections.
- Both visual pattern analysis and semi-quantitative measurements contribute to its diagnostic utility.
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