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Semi-quantitative Assessment Using [18F]FDG Tracer in Patients with Severe Brain Injury
Published on: November 9, 2018
Added value of FDG-PET for detection of progressive supranuclear palsy
Ralph Buchert1, Hans-Jürgen Huppertz2, Florian Wegner3
1Department of Diagnostic and Interventional Radiology and Nuclear Medicine, University Medical Center Hamburg-Eppendorf, Hamburg, Germany r.buchert@uke.de.
Background:
Diagnostic criteria for progressive supranuclear palsy (PSP) include midbrain atrophy in MRI and hypometabolism in [18F]fluorodeoxyglucose (FDG)-positron emission tomography (PET) as supportive features. Due to limited data regarding their relative and sequential value, there is no recommendation for an algorithm to combine both modalities to increase diagnostic accuracy. This study evaluated the added value of sequential imaging using state-of-the-art methods to analyse the images regarding PSP features.
Methods:
The retrospective study included 41 PSP patients, 21 with Richardson's syndrome (PSP-RS), 20 with variant PSP phenotypes (vPSP) and 46 sex- and age-matched healthy controls. A pretrained support vector machine (SVM) for the classification of atrophy profiles from automatic MRI volumetry was used to analyse T1w-MRI (output: MRI-SVM-PSP score). Covariance pattern analysis was applied to compute the expression of a predefined PSP-related pattern in FDG-PET (output: PET-PSPRP expression score).
Results:
The area under the receiver operating characteristic curve for the detection of PSP did not differ between MRI-SVM-PSP and PET-PSPRP expression score (p≥0.63): about 0.90, 0.95 and 0.85 for detection of all PSP, PSP-RS and vPSP. The MRI-SVM-PSP score achieved about 13% higher specificity and about 15% lower sensitivity than the PET-PSPRP expression score. Decision tree models selected the MRI-SVM-PSP score for the first branching and the PET-PSPRP expression score for a second split of the subgroup with normal MRI-SVM-PSP score, both in the whole sample and when restricted to PSP-RS or vPSP.
Conclusions:
FDG-PET provides added value for PSP-suspected patients with normal/inconclusive T1w-MRI, regardless of PSP phenotype and the methods to analyse the images for PSP-typical features.
Insights
This study shows that [18F]fluorodeoxyglucose-positron emission tomography (FDG-PET) offers valuable diagnostic support for progressive supranuclear palsy (PSP) when MRI results are inconclusive. Combining MRI and FDG-PET enhances diagnostic accuracy for PSP subtypes.
Area of Science:
- Neurology
- Radiology
- Medical Imaging
Background:
- Diagnostic criteria for progressive supranuclear palsy (PSP) utilize MRI and FDG-PET findings.
- Limited data exists on the combined sequential value of MRI and FDG-PET for PSP diagnosis.
- This study aimed to evaluate the added value of sequential imaging in diagnosing PSP.
Purpose of the Study:
- To assess the diagnostic accuracy of combining MRI and FDG-PET for PSP.
- To determine the sequential value of these imaging modalities.
- To develop an algorithm for improved PSP diagnosis.
Main Methods:
- Retrospective analysis of 41 PSP patients and 46 controls.
- Utilized a support vector machine (SVM) for MRI volumetry (MRI-SVM-PSP score).
- Applied covariance pattern analysis to FDG-PET scans (PET-PSPRP expression score).
Main Results:
- Both MRI-SVM-PSP and PET-PSPRP scores showed high diagnostic performance for PSP detection.
- MRI-SVM-PSP had higher specificity, while PET-PSPRP had higher sensitivity.
- Decision tree models indicated sequential use: MRI first, then FDG-PET for inconclusive cases.
Conclusions:
- FDG-PET provides significant added value for PSP diagnosis in patients with normal or inconclusive MRI findings.
- This benefit applies across different PSP phenotypes.
- Sequential imaging analysis enhances diagnostic accuracy for progressive supranuclear palsy.
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