Recurrent brain tumor versus radiation necrosis; can dynamic susceptibility contrast (DSC) perfusion magnetic resonance imaging differentiate?
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Springer Science and Business Media LLC
Reference23 articles.
1. Recent advances in imaging of brain tumors;Sanghvi;Indian J Cancer,2009
2. The diagnostic performance of perfusion MRI for differentiating glioma recurrence from pseudoprogression: a meta-analysis;Wan;Medicine,2017
3. Radiation necrosis following treatment of high grade glioma–a review of the literature and current understanding;Siu;Acta Neurochir,2012
4. Differentiation of recurrent glioblastoma multiforme from radiation necrosis after external beam radiation therapy with dynamic susceptibility-weighted contrast-enhanced perfusion MR imaging;Barajas;Radiology,2009
5. Comparison of dynamic susceptibility-weighted contrast-enhanced MR methods: recommendations for measuring relative cerebral blood volume in brain tumors;Paulson;Radiology,2008
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