PubMedCrossRef 8 Goh V, Ng QS, Miles K: Computed Tomography Perf

PubMedCrossRef 8. Goh V, Ng QS, Miles K: Computed Tomography selleck Perfusion Imaging for Therapeutic Assessment: Has It Come of Age as a Biomarker in Oncology? Invest Radiol 2011, 47:2–4.CrossRef 9.

Ng CS, Charnsangavej C, Wei W, Yao JC: Perfusion CT findings in patients with metastatic carcinoid tumors undergoing bevacizumab and interferon therapy. AJR Am J Roentgenol 2011, 196:569–576.PubMedCrossRef 10. Sorensen AG, Batchelor TT, Zhang WT, Chen PJ, Yeo P, Wang M, Jennings D, Wen PY, Lahdenranta J, Ancukiewicz M, di Tomaso E, Duda DG, Jain RK: A “”vascular normalization index”" as potential mechanistic see more biomarker to predict survival after a single dose of cediranibin recurrent glioblastoma patients. Cancer Res 2009, 69:5296–5300.PubMedCrossRef 11. Sawlani RN, Raizer J, Horowitz SW, Shin W, Grimm SA, Chandler JP, Levy R, Getch C, Carroll TJ: Glioblastoma: a method for predicting response to antiangiogenic chemotherapy NVP-BGJ398 research buy by using MR perfusion imaging-pilot study. Radiology 2010, 55:622–628.CrossRef

12. Fellah S, Girard N, Chinot O, Cozzone PJ, Callot V: Early evaluation of tumoral response to antiangiogenic therapy by arterial spin labeling perfusion magnetic resonance imaging and susceptibility weighted imaging in a patient with recurrent glioblastoma receiving bevacizumab. J Clin Oncol 2011,10(29):308–311.CrossRef 13. Saraswathy S, Crawford FW, Lamborn KR, Pirzkall A, Chang S, Cha S, Nelson SJ: Evaluation of MR markers that predict survival in patients with newly diagnosed GBM prior to adjuvant therapy. J Neurooncol 2009, 91:69–81.PubMedCrossRef 14. Nowosielski M, Recheis W, Goebel

Phosphatidylinositol diacylglycerol-lyase G, Güler O, Tinkhauser G, Kostron H, Schocke M, Gotwald T, Stockhammer G, Hutterer M: ADC histograms predict response to anti-angiogenic therapy in patients with recurrent high-grade glioma. Neuroradiology 2011, 53:291–302.PubMedCrossRef 15. Hattingen E, Jurcoane A, Bähr O, Rieger J, Magerkurth J, Anti S, Steinbach JP, Pilatus U: Bevacizumab impairs oxidative energy metabolism and shows antitumoral effects in recurrent glioblastomas: a 31P/1H MRSI and quantitative magnetic resonance imaging study. Neuro Oncol 2011, 13:1349–1363.PubMedCrossRef 16. Ellingson BM, Cloughesy TF, Lai A, Nghiemphu PL, Mischel PS, Pope WB: Quantitative volumetric analysis of conventional MRI response in recurrent glioblastoma treated with bevacizumab. Neuro Oncol 2011, 13:401–409.PubMedCrossRef 17. Pieper S, Lorensen B, Schroeder W, Kikinis R, The NA-MIC Kit: TK, VTK, pipelines, grids and 3D slicer as an open platform for the medical image computing community. Proceedings of the 3rd IEEE International Symposium on Biomedical Imaging: Nano to Macro 2006,:698–701. 18. Masunaga S, Liu Y, Tanaka H, Sakurai Y, Suzuki M, Kondo N, Maruhashi A, Ono K: Reducing intratumor acute hypoxia through bevacizumabtreatment, referring to the response of quiescent tumor cells and metastatic potential. Br J Radiol 2011, 84:1131–1138.PubMedCrossRef 19.

Comments are closed.