Potential utility of conventional MRI signs in diagnosing pseudoprogression in glioblastoma
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Abstract
Objective: To examine the potential utility of conventional MRI signs in differentiating pseudoprogression (PsP) from early progression (EP).
Methods: This retrospective study reviewed initial postradiotherapy MRI scans of 321 patients with glioblastoma undergoing chemotherapy and radiotherapy. A total of 93 patients were found to have new or increased enhancing mass lesions, raising the possibility of PsP. Final diagnosis of PsP or EP was established upon review of surgical specimens from a second resection or by clinical and radiologic follow-up. A total of 11 MRI signs potentially helpful in the differentiation between PsP and EP were examined on the initial post-RT MRI and were correlated with the final diagnosis through χ2 or Fisher exact test.
Results: Sixty-three (67.7%) of the 93 patients had EP, of which 22 (34.9%) were diagnosed by pathology. Thirty patients (32.3%) had PsP; 6 (16.7% of the 30) were diagnosed by pathology. Subependymal enhancement was predictive for EP (p = 0.001) with 38.1% sensitivity, 93.3% specificity, and 41.8% negative predictive value. The other 10 signs had no predictive value (p = 0.06–1.0).
Conclusions: Conventional MRI signs have limited utility in diagnosing PsP in patients with recently treated glioblastomas and worsening enhancing lesions. We did not find a sign with a high negative predictive value for PsP that would have been the most useful for the clinical physician. When present, subependymal spread of the enhancing lesion is a useful MRI marker in identifying EP rather than PsP.
Footnotes
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- ADC
- apparent diffusion coefficient
- DWI
- diffusion-weighted image
- EP
- early progression
- FLAIR
- fluid-attenuated inversion recovery
- MGMT
- O6-methylguanine-methyltransferase enzyme
- OS
- overall survival
- poly-ICLC
- polyriboinosinic-polyribocytidylic
- PsP
- pseudoprogression
- RT
- radiation therapy
- TE
- echo time
- TI
- inversion time
- TMZ
- temozolomide
- TR
- repetition time
- Received September 9, 2010.
- Accepted February 14, 2011.
- Copyright © 2011 by AAN Enterprises, Inc.
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