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Intracranial ependymoma and subependymoma: MR manifestations
G P Spoto1, G A Press, J R Hesselink
1Department of Radiology, University of California, San Diego School of Medicine 92103.
Abstract:
In order to provide a detailed description of the MR appearance of intracranial ependymoma, the MR examinations of 12 patients (10 with ependymomas and two with subependymomas) were reviewed and correlated with operative and pathologic reports. Three of 10 ependymomas were intraventricular, two were intraparenchymal, and five were transependymal, extending from CSF spaces into parenchyma. Both subependymomas were intraventricular. Solid ependymomas and subependymomas were iso- to hypointense relative to normal white matter on T1-weighted images and hyperintense on proton-density- and T2-weighted images. Foci of signal heterogeneity within solid neoplasms represented methemoglobin, hemosiderin, necrosis, calcification, and encased native vessels or tumor vascularity. Gd-DTPA-enhanced images in two patients differentiated enhancing tumor from surrounding nonenhancing edema and from surrounding normal brain parenchyma. Cystic neoplasms had sharply defined, round or oval margins and uniform signal intensity equivalent to or slightly hyperintense relative to CSF. Tumor-associated calcification was not demonstrated readily by MR. Sagittal and coronal images were valuable in assessing the amount of intraventricular tumor and route of extension. We conclude that the MR differentiation of ependymomas and subependymomas from other gliomas is provided most reliably by the location and morphology of the tumor and not by differences in signal intensity. The typical ependymoma arises within the fourth ventricle as a solid mass with heterogeneous signal intensity. A propensity for spread is seen along the CSF pathways via the foramina of Magendie and Luschka and the aqueduct of Sylvius. Supratentorial ependymomas may be periventricular in location and have cystic components. The two subependymomas in our series were solid, intraventricular tumors with relatively homogeneous signal intensities.
Insights
Magnetic resonance imaging (MRI) helps differentiate intracranial ependymomas and subependymomas based on tumor location and shape, not signal intensity. Typical ependymomas are solid masses in the fourth ventricle with potential spread along cerebrospinal fluid pathways.
Area of Science:
- Neuroradiology
- Neuro-oncology
- Medical imaging
Background:
- Intracranial ependymomas and subependymomas are gliomas that arise from ependymal cells.
- Accurate differentiation of these tumors is crucial for treatment planning and prognosis.
Purpose of the Study:
- To describe the detailed magnetic resonance (MR) appearance of intracranial ependymomas and subependymomas.
- To correlate MR findings with operative and pathologic reports to establish diagnostic criteria.
Main Methods:
- Review of MR examinations from 12 patients (10 ependymomas, 2 subependymomas).
- Correlation of MR findings with surgical and histopathological data.
- Analysis of tumor signal intensity, morphology, location, and enhancement patterns.
Main Results:
- Ependymomas and subependymomas typically appear iso- to hypointense on T1-weighted images and hyperintense on proton-density and T2-weighted images.
- Signal heterogeneity can indicate methemoglobin, necrosis, calcification, or vascularity.
- Location and morphology are more reliable for differentiation than signal intensity; typical ependymomas are solid masses in the fourth ventricle with CSF pathway spread.
Conclusions:
- MR differentiation of ependymomas and subependymomas from other gliomas relies most on tumor location and morphology.
- Typical ependymomas arise in the fourth ventricle as solid, heterogeneous masses with a propensity for CSF spread.
- Subependymomas are typically solid, intraventricular tumors with homogeneous signal intensity.