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The Clinical Application of Tumor Treating Fields Therapy in Glioblastoma
Published on: April 16, 2019
Patterns of radiation-induced subependymal enhancement in patients with high-grade glioma
Arpita Sahu1,2, Daksh Mehta1,2, Archya Dasgupta2,3
1Department of Radiodiagnosis, Tata Memorial Centre, India.
Abstract:
Background and purposeInterpretation of imaging findings after radiation can be challenging in patients with high-grade glioma. Appearance of contrast-enhancing lesions during follow-up imaging poses difficulty in differentiating true progression from treatment-related changes. In the current study, we report patterns and clinical outcomes of radiation-induced subependymal enhancement.Materials and methodsPatients with histopathological diagnosis of HGG developing radiation-induced contrast enhancement in the subependymal region were considered in the retrospective study. The subependymal enhancement was required to be in the high-dose region of radiotherapy. Patients underwent multiparametric magnetic resonance imaging (MRI), which included T1-contrast, T2-weighted, perfusion, and spectroscopy. Confirmation of radiation changes rather than disease progression was decided based on regression or stability of concerned findings on follow-up imaging.ResultsThirty-four patients were included in the analysis. The median time from radiotherapy to onset of subependymal enhancement was 15 months. The enhancement pattern was feathery, nodular, and linear in 53%, 35%, and 3% of patients, respectively. A T2-hyperintense signal with a hypointense rim was seen in 74% of patients. Majority of these lesions were isoperfused (26%) or hypoperfused (47%). The median radiological follow-up after onset of subependymal enhancement was 7 months (range 1-61 months). At final follow-up, complete resolution, partial regression, and stable findings of the concerned enhancement were seen in 18%, 38%, and 44%, respectively.ConclusionSubependymal enhancement can be seen following radiation, which should be considered during the evaluation of follow-up imaging. Multiparametric MRI with specific contrast patterns, T2-weighted findings, and perfusion imaging can help identify radiation-induced enhancement.
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