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Assessment of intracranial meningioma-associated calcifications using susceptibility-weighted MRI
Lisa C Adams1, Sarah M Böker1, Yvonne Y Bender1
1Department of Radiology, Charité, Charitéplatz, Berlin, Germany.
Purpose:
To determine the diagnostic accuracy of susceptibility-weighted MRI (SW-MRI) for the detection of intracranial meningioma-associated calcifications compared with standard MR sequences, using computed tomography (CT) as a reference standard.
Materials And Methods:
354 patients, who had received both a CT and a 1.5 Tesla clinical brain MRI with SW-MRI sequences between January 2014 and July 2016, were retrospectively evaluated and 316 patients were included. Calcification diameter was used to assess correlation between imaging modalities. Sensitivity and specificity as well as intra- and interobserver agreement were calculated for SW-MRI and standard MRI sequences when compared with reference standard CT.
Results:
Fifty patients had positive findings for intracranial meningioma-associated calcifications on CT scans. SW-MRI reached a sensitivity of 94% (95% confidence interval [CI]: 83-99%) and a specificity of 95% (95% CI: 92-98%) for the detection of meningioma-associated calcifications, while standard MRI yielded a sensitivity of 64% (95% CI: 49-77%) and a specificity of 94% (95% CI: 90-96%). Diameter measurements between SW-MRI and CT showed a close correlation (R2 = 0.99; P < 0.001) with a slight overestimation of size, which, however, did not reach significance level (SW-MRI: 8.2 mm ± 7.1; CT: 6.8 mm ± 6.4; P = 0.29). Compared with standard MRI, SW-MRI showed a better interobserver agreement for size measurements of calcifications.
Conclusion:
SW-MRI enables a reliable detection of intracranial meningioma-associated calcifications by using CT as a reference and offers a higher diagnostic accuracy than standard MRI.
Level Of Evidence:
3 Technical Efficacy: Stage 2 J. Magn. Reson. Imaging 2017;46:1177-1186.
Insights
Susceptibility-weighted MRI (SW-MRI) reliably detects intracranial meningioma calcifications, outperforming standard MRI sequences. This advanced MRI technique offers higher diagnostic accuracy for identifying these calcifications compared to conventional methods.
Area of Science:
- Radiology
- Neuroimaging
- Oncology
Background:
- Intracranial meningiomas are common primary brain tumors.
- Accurate detection of calcifications within meningiomas is crucial for diagnosis and treatment planning.
- Standard MRI sequences may have limitations in visualizing calcifications.
Purpose of the Study:
- To evaluate the diagnostic accuracy of susceptibility-weighted MRI (SW-MRI) for detecting intracranial meningioma-associated calcifications.
- To compare SW-MRI performance against standard MRI sequences.
- To utilize computed tomography (CT) as the reference standard for comparison.
Main Methods:
- Retrospective analysis of 316 patients who underwent both CT and 1.5 Tesla brain MRI with SW-MRI sequences.
- Sensitivity, specificity, and inter/intra-observer agreement were calculated for SW-MRI and standard MRI.
- Correlation of calcification diameter measurements between SW-MRI and CT was assessed.
Main Results:
- SW-MRI demonstrated high sensitivity (94%) and specificity (95%) for detecting calcifications, significantly outperforming standard MRI (64% sensitivity).
- Diameter measurements showed a strong correlation between SW-MRI and CT (R² = 0.99), with minimal, non-significant overestimation.
- SW-MRI exhibited superior inter-observer agreement for calcification size measurements compared to standard MRI.
Conclusions:
- SW-MRI is a reliable method for detecting intracranial meningioma-associated calcifications.
- SW-MRI offers superior diagnostic accuracy compared to standard MRI sequences for this indication.
- The findings support the integration of SW-MRI in the neuroimaging workup of suspected meningiomas.
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