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Published on: January 27, 2015
Brain metabolic abnormalities associated with developmental venous anomalies
M Larvie1, D Timerman2, J A Thum2
1From the Harvard Medical School (M.L.), Boston, Massachusetts Divisions of Neuroradiology and Nuclear Medicine and Molecular Imaging (M.L., D.T., J.A.T.), Department of Radiology, Massachusetts General Hospital, Boston, Massachusetts mlarvie@gmail.com.
Background And Purpose:
Developmental venous anomalies are the most common intracranial vascular malformation and are typically regarded as inconsequential, especially when small. While there are data regarding the prevalence of MR imaging findings associated with developmental venous anomalies, FDG-PET findings have not been well-characterized.
Materials And Methods:
Clinical information systems were used to retrospectively identify patients with developmental venous anomalies depicted on MR imaging examinations who had also undergone FDG-PET. Both the MR imaging and FDG-PET scans were analyzed to characterize the developmental venous anomalies and associated findings on the structural and functional scans. Qualitative and quantitative assessments were performed, including evaluation of the size of the developmental venous anomaly, associated MR imaging findings, and characterization of the FDG uptake in the region of the developmental venous anomaly.
Results:
Twenty-five developmental venous anomalies in 22 patients were identified that had been characterized with both MR imaging and FDG-PET, of which 76% (19/25) were associated with significant metabolic abnormality in the adjacent brain parenchyma, most commonly hypometabolism. Patients with moderate and severe hypometabolism were significantly older (moderate: mean age, 65 ± 7.4 years, P = .001; severe: mean age, 61 ± 8.9 years, P = .008) than patients with developmental venous aberrancies that did not have abnormal metabolic activity (none: mean age, 29 ± 14 years).
Conclusions:
Most (more than three-quarters) developmental venous anomalies in our series of 25 cases were associated with metabolic abnormality in the adjacent brain parenchyma, often in the absence of any other structural abnormality. Consequently, we suggest that developmental venous anomalies may be better regarded as developmental venous aberrancies.
Insights
Most developmental venous anomalies (DVAs) show metabolic abnormalities on FDG-PET scans, often without other structural changes. These findings suggest DVAs may be better termed developmental venous aberrancies.
Area of Science:
- Neurology
- Radiology
- Nuclear Medicine
Background:
- Developmental venous anomalies (DVAs) are common intracranial vascular malformations.
- DVAs are often considered inconsequential, particularly when small.
- FDG-PET findings in DVAs are not well-characterized.
Purpose of the Study:
- To characterize FDG-PET findings in patients with DVAs.
- To evaluate the association between DVAs and metabolic abnormalities in adjacent brain parenchyma.
- To determine if DVAs should be reclassified as developmental venous aberrancies.
Main Methods:
- Retrospective review of patients with DVAs on MR imaging who underwent FDG-PET.
- Analysis of MR imaging and FDG-PET scans for DVA characteristics and associated findings.
- Qualitative and quantitative assessment of DVA size, MR imaging findings, and FDG uptake.
Main Results:
- Seventy-six percent (19/25) of DVAs were associated with metabolic abnormalities, predominantly hypometabolism.
- Patients with moderate and severe hypometabolism were significantly older than those without metabolic abnormalities.
- Metabolic abnormalities were often present without other structural abnormalities.
Conclusions:
- The majority of DVAs are associated with adjacent brain parenchyma metabolic abnormalities.
- These metabolic changes can occur independently of other structural DVA findings.
- The findings support reclassifying DVAs as developmental venous aberrancies.
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