Abstract
BACKGROUND AND PURPOSE: Differentiating between tumors and pseudotumoral lesions by conventional MR imaging may be a challenging question. This study aims to evaluate the potential usefulness and the added value that single-voxel proton MR spectroscopy could provide on this discrimination MATERIALS AND METHODS: A total of 84 solid brain lesions were retrospectively included in the study (68 glial tumors and 16 pseudotumoral lesions). Single-voxel spectra at TE 30 ms (short TE) and 136 ms (long TE) were available in all cases. Two groups were defined: "training-set" (56 cases) and "test-set" (28 cases). Tumors and pseudotumors were compared in the training-set with the Mann- Whitney (7test. Ratios between resonances were defined as classifiers for new cases, and thresholds were selected with receiver operating characteristic (ROC) curves. The added value of spectroscopy was evaluated by 5 neuroradiologists and assessed with the Wilcoxon signed-rank test RESULTS: Differences between tumors and pseudotumors were found in myo-inositol (mIns); P < .001), glutamine (Glx; P< .01), and choline (CHO;
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CITATION STYLE
Majós, C., Aguilera, C., Alonso, J., Julià-Sapé, M., Castañer, S., Sánchez, J. J., … Arús, C. (2009). Proton MR spectroscopy improves discrimination between tumor and pseudotumoral lesion in solid brain masses. American Journal of Neuroradiology, 30(3), 544–551. https://doi.org/10.3174/ajnr.A1392
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