Skip to main content
Top
Published in: Journal of Neuro-Oncology 3/2017

01-05-2017 | Clinical Study

Outcomes of postoperative stereotactic radiosurgery to the resection cavity versus stereotactic radiosurgery alone for melanoma brain metastases

Authors: Giuseppe Minniti, Sergio Paolini, Giancarlo D’Andrea, Gaetano Lanzetta, Francesco Cicone, Veronica Confaloni, Alessandro Bozzao, Vincenzo Esposito, Mattia Osti

Published in: Journal of Neuro-Oncology | Issue 3/2017

Login to get access

Abstract

To investigate local control and radiation-induced brain necrosis in patients with melanoma brain metastases who received complete resection plus fractionated stereotactic radiosurgery (fSRS, 3 × 9 Gy) or fSRS alone. Factors associated with the clinical outcomes and the development of brain necrosis have been assessed. One hundred and twenty consecutive patients with 137 melanoma brain metastases who received surgery plus fSRS (S + fSRS) or fSRS alone were analyzed. All lesions evaluated in the study were treated with a dose of 27 Gy given in 3 fractions over three consecutive days. Cumulative incidence analysis was used to compare local failure (LF), distant brain failure (DBF), and radiation-induced brain necrosis (RN) between groups from the time of SRS. At a median follow-up of 13 months, median OS times and 1-year survival rates were comparable: S + fSRS, 14 months and 85%; fSRS, 12 months and 85% (p = 0.2). Median DBF did not differ significantly by group, being 14 months for both groups. Nine patients who received S + fSRS and 20 patients treated with fSRS recurred locally (p = 0.03). Six-month and 1-year LF rates were 5 and 12% in S + fSRS group and 17 and 28% in fSRS group (p = 0.02). RN occurred in 21 patients (S + fSRS, n = 14; fSRS, n = 7; p = 0.1). The cumulative 1-year incidence of RN was 13% after S + fSRS and 8% after fSRS (p = 0.15). In conclusion, postoperative SRS (3 × 9 Gy) to the resection cavity is an effective treatment modality for melanoma brain metastases associated with better local control as compared with fSRS alone.
Literature
1.
go back to reference Ajithkumar T, Parkinson C, Fife K, Corrie P, Jefferies S (2015) Evolving treatment options for melanoma brain metastases. Lancet Oncol 16:e486–e497CrossRefPubMed Ajithkumar T, Parkinson C, Fife K, Corrie P, Jefferies S (2015) Evolving treatment options for melanoma brain metastases. Lancet Oncol 16:e486–e497CrossRefPubMed
2.
go back to reference Aoyama H, Shirato H, Tago M, Nakagawa K, Toyoda T, Hatano K, Kenjyo M, Oya N, Hirota S, Shioura H, Kunieda E, Inomata T, Hayakawa K, Katoh N, Kobashi G (2006) Stereotactic radiosurgery plus whole-brain radiation therapy vs stereotactic radiosurgery alone for treatment of brain metastases: a randomized controlled trial. JAMA 295:2483–2491CrossRefPubMed Aoyama H, Shirato H, Tago M, Nakagawa K, Toyoda T, Hatano K, Kenjyo M, Oya N, Hirota S, Shioura H, Kunieda E, Inomata T, Hayakawa K, Katoh N, Kobashi G (2006) Stereotactic radiosurgery plus whole-brain radiation therapy vs stereotactic radiosurgery alone for treatment of brain metastases: a randomized controlled trial. JAMA 295:2483–2491CrossRefPubMed
3.
go back to reference Kocher M, Soffietti R, Abacioglu U, Villà S, Fauchon F, Baumert BG, Fariselli L, Tzuk-Shina T, Kortmann RD, Carrie C, Hassel MB, Kouri M, Valeinis E, van den Berge D, Collette S, Collette L, Mueller RP (2011) Adjuvant whole-brain radiotherapy versus observation after radiosurgery or surgical resection of one to three cerebral metastases: results of the EORTC 22952–26001 study. J Clin Oncol 29:134–141CrossRefPubMed Kocher M, Soffietti R, Abacioglu U, Villà S, Fauchon F, Baumert BG, Fariselli L, Tzuk-Shina T, Kortmann RD, Carrie C, Hassel MB, Kouri M, Valeinis E, van den Berge D, Collette S, Collette L, Mueller RP (2011) Adjuvant whole-brain radiotherapy versus observation after radiosurgery or surgical resection of one to three cerebral metastases: results of the EORTC 22952–26001 study. J Clin Oncol 29:134–141CrossRefPubMed
4.
go back to reference Yu C, Chen JC, Apuzzo ML, O’Day S, Giannotta SL, Weber JS, Petrovich Z (2002) Metastatic melanoma to the brain: prognostic factors after gamma knife radiosurgery. Int J Radiat Oncol Biol Phys 52:1277–1287CrossRefPubMed Yu C, Chen JC, Apuzzo ML, O’Day S, Giannotta SL, Weber JS, Petrovich Z (2002) Metastatic melanoma to the brain: prognostic factors after gamma knife radiosurgery. Int J Radiat Oncol Biol Phys 52:1277–1287CrossRefPubMed
5.
go back to reference Selek U, Chang EL, Hassenbusch SJ 3rd, Shiu AS, Lang FF, Allen P, Weinberg J, Sawaya R, Maor MH (2004) Stereotactic radiosurgical treatment in 103 patients for 153 cerebral melanoma metastases. Int J Radiat Oncol Biol Phys 59:1097–1106CrossRefPubMed Selek U, Chang EL, Hassenbusch SJ 3rd, Shiu AS, Lang FF, Allen P, Weinberg J, Sawaya R, Maor MH (2004) Stereotactic radiosurgical treatment in 103 patients for 153 cerebral melanoma metastases. Int J Radiat Oncol Biol Phys 59:1097–1106CrossRefPubMed
6.
go back to reference Manon R, O’Neill A, Knisely J, Werner-Wasik M, Lazarus HM, Wagner H, Gilbert M, Mehta M; Eastern Cooperative Oncology Group (2005) Phase II trial of radiosurgery for one to three newly diagnosed brain metastases from renal cell carcinoma, melanoma, and sarcoma: an Eastern Cooperative Oncology Group study (E 6397). J Clin Oncol 23:8870–8876.CrossRefPubMed Manon R, O’Neill A, Knisely J, Werner-Wasik M, Lazarus HM, Wagner H, Gilbert M, Mehta M; Eastern Cooperative Oncology Group (2005) Phase II trial of radiosurgery for one to three newly diagnosed brain metastases from renal cell carcinoma, melanoma, and sarcoma: an Eastern Cooperative Oncology Group study (E 6397). J Clin Oncol 23:8870–8876.CrossRefPubMed
7.
go back to reference Frakes JM, Figura NB, Ahmed KA, Juan TH, Patel N, Latifi K, Sarangkasiri S, Strom TJ, Chinnaiyan P, Rao NG, Etame AB (2015) Potential role for LINAC-based stereotactic radiosurgery for the treatment of 5 or more radioresistant melanoma brain metastases. J Neurosurg 123:1261–1267CrossRefPubMed Frakes JM, Figura NB, Ahmed KA, Juan TH, Patel N, Latifi K, Sarangkasiri S, Strom TJ, Chinnaiyan P, Rao NG, Etame AB (2015) Potential role for LINAC-based stereotactic radiosurgery for the treatment of 5 or more radioresistant melanoma brain metastases. J Neurosurg 123:1261–1267CrossRefPubMed
8.
go back to reference Minniti G, Scaringi C, Paolini S, Lanzetta G, Romano A, Cicone F, Osti M, Enrici RM, Esposito V (2016) Single-fraction versus multifraction (3 × 9 Gy) stereotactic radiosurgery for large (>2 cm) brain metastases: a comparative analysis of local control and risk of radiation-induced brain necrosis. Int J Radiat Oncol Biol Phys 95:1142–1148CrossRefPubMed Minniti G, Scaringi C, Paolini S, Lanzetta G, Romano A, Cicone F, Osti M, Enrici RM, Esposito V (2016) Single-fraction versus multifraction (3 × 9 Gy) stereotactic radiosurgery for large (>2 cm) brain metastases: a comparative analysis of local control and risk of radiation-induced brain necrosis. Int J Radiat Oncol Biol Phys 95:1142–1148CrossRefPubMed
9.
go back to reference Smalley SR, Laws ER Jr, O’Fallon JR, Shaw EG, Schray MF (1992) Resection for solitary brain metastasis. Role of adjuvant radiation and prognostic variables in 229 patients. J Neurosurg 77:531–540CrossRefPubMed Smalley SR, Laws ER Jr, O’Fallon JR, Shaw EG, Schray MF (1992) Resection for solitary brain metastasis. Role of adjuvant radiation and prognostic variables in 229 patients. J Neurosurg 77:531–540CrossRefPubMed
10.
go back to reference Armstrong JG, Wronski M, Galicich J, Arbit E, Leibel SA, Burt M (1994) Postoperative radiation for lung cancer metastatic to the brain. J Clin Oncol 12:2340–2344CrossRefPubMed Armstrong JG, Wronski M, Galicich J, Arbit E, Leibel SA, Burt M (1994) Postoperative radiation for lung cancer metastatic to the brain. J Clin Oncol 12:2340–2344CrossRefPubMed
11.
go back to reference Patchell RA, Tibbs PA, Regine WF Dempsey RJ, Mohiuddin M, Kryscio RJ, Markesbery WR, Foon KA, Young B (1998) Postoperative radiotherapy in the treatment of single metastases to the brain: a randomized trial. JAMA 280:1485–1489CrossRefPubMed Patchell RA, Tibbs PA, Regine WF Dempsey RJ, Mohiuddin M, Kryscio RJ, Markesbery WR, Foon KA, Young B (1998) Postoperative radiotherapy in the treatment of single metastases to the brain: a randomized trial. JAMA 280:1485–1489CrossRefPubMed
12.
go back to reference McPherson CM, Suki D, Feiz-Erfan I Mahajan A, Chang E, Sawaya R, Lang FF (2010) Adjuvant whole-brain radiation therapy after surgical resection of single brain metastases. Neuro Oncology 12:711–719CrossRefPubMedPubMedCentral McPherson CM, Suki D, Feiz-Erfan I Mahajan A, Chang E, Sawaya R, Lang FF (2010) Adjuvant whole-brain radiation therapy after surgical resection of single brain metastases. Neuro Oncology 12:711–719CrossRefPubMedPubMedCentral
13.
go back to reference Rao G, Ahmed S, Hess K, Mahajan A (2016) Postoperative stereotactic radiosurgery vs. observation for completely resected brain metastases: results of a prospective randomized study. Neurosurgery 63(Suppl 1):184CrossRefPubMed Rao G, Ahmed S, Hess K, Mahajan A (2016) Postoperative stereotactic radiosurgery vs. observation for completely resected brain metastases: results of a prospective randomized study. Neurosurgery 63(Suppl 1):184CrossRefPubMed
14.
go back to reference Mathieu D, Kondziolka D, Flickinger JC Fortin D, Kenny B, Michaud K, Mongia S, Niranjan A, Lunsford LD (2008) Tumor bed radiosurgery after resection of cerebral metastases. Neurosurgery 62:817–823CrossRefPubMed Mathieu D, Kondziolka D, Flickinger JC Fortin D, Kenny B, Michaud K, Mongia S, Niranjan A, Lunsford LD (2008) Tumor bed radiosurgery after resection of cerebral metastases. Neurosurgery 62:817–823CrossRefPubMed
15.
go back to reference Soltys SG, Adler JR, Lipani JD Jackson PS, Choi CY, Puataweepong P, White S, Gibbs IC, Chang SD (2008) Stereotactic radiosurgery of the postoperative resection cavity for brain metastases. Int J Radiat Oncol Biol Phys 270:187–193CrossRef Soltys SG, Adler JR, Lipani JD Jackson PS, Choi CY, Puataweepong P, White S, Gibbs IC, Chang SD (2008) Stereotactic radiosurgery of the postoperative resection cavity for brain metastases. Int J Radiat Oncol Biol Phys 270:187–193CrossRef
16.
go back to reference Do L, Pezner R, Radany E, Liu A, Staud C, Badie B (2009) Resection followed by stereotactic radiosurgery to resection cavity for intracranial metastases. Int J Radiat Oncol Biol Phys 73:486–491CrossRefPubMed Do L, Pezner R, Radany E, Liu A, Staud C, Badie B (2009) Resection followed by stereotactic radiosurgery to resection cavity for intracranial metastases. Int J Radiat Oncol Biol Phys 73:486–491CrossRefPubMed
17.
go back to reference Wang CC, Floyd SR, Chang CH, Warnke PC, Chio CC, Kasper EM, Mahadevan A, Wong ET, Chen CC (2012) Cyberknife hypofractionated stereotactic radiosurgery (HSRS) of resection cavity after excision of large cerebral metastasis: efficacy and safety of an 800 cGy × 3 daily fractions regimen. J Neurooncol 106:601–610CrossRefPubMed Wang CC, Floyd SR, Chang CH, Warnke PC, Chio CC, Kasper EM, Mahadevan A, Wong ET, Chen CC (2012) Cyberknife hypofractionated stereotactic radiosurgery (HSRS) of resection cavity after excision of large cerebral metastasis: efficacy and safety of an 800 cGy × 3 daily fractions regimen. J Neurooncol 106:601–610CrossRefPubMed
18.
go back to reference Minniti G, Esposito V, Clarke E, Scaringi C, Lanzetta G, Salvati M, Raco A, Bozzao A, Maurizi Enrici R (2013) Multidose stereotactic radiosurgery (9 Gy × 3) of the postoperative resection cavity for treatment of large brain metastases. Int J Radiat Oncol Biol Phys 86:623–629CrossRefPubMed Minniti G, Esposito V, Clarke E, Scaringi C, Lanzetta G, Salvati M, Raco A, Bozzao A, Maurizi Enrici R (2013) Multidose stereotactic radiosurgery (9 Gy × 3) of the postoperative resection cavity for treatment of large brain metastases. Int J Radiat Oncol Biol Phys 86:623–629CrossRefPubMed
19.
go back to reference Ahmed KA, Freilich JM, Abuodeh Y, Figura N, Patel N, Sarangkasiri S, Chinnaiyan P, Yu HH, Etame AB, Rao NG (2014) Fractionated stereotactic radiotherapy to the post-operative cavity for radioresistant and radiosensitive brain metastases. J Neurooncol 118:179–186CrossRefPubMed Ahmed KA, Freilich JM, Abuodeh Y, Figura N, Patel N, Sarangkasiri S, Chinnaiyan P, Yu HH, Etame AB, Rao NG (2014) Fractionated stereotactic radiotherapy to the post-operative cavity for radioresistant and radiosensitive brain metastases. J Neurooncol 118:179–186CrossRefPubMed
20.
go back to reference Eaton BR, LaRiviere MJ, Kim S, Prabhu RS, Patel K, Kandula S, Oyesiku N, Olson J, Curran W, Shu HK, Crocker I (2015) Hypofractionated radiosurgery has a better safety profile than single fraction radiosurgery for large resected brain metastases. J Neurooncol 123:103–111CrossRefPubMed Eaton BR, LaRiviere MJ, Kim S, Prabhu RS, Patel K, Kandula S, Oyesiku N, Olson J, Curran W, Shu HK, Crocker I (2015) Hypofractionated radiosurgery has a better safety profile than single fraction radiosurgery for large resected brain metastases. J Neurooncol 123:103–111CrossRefPubMed
21.
go back to reference Joiner M (2009) Quantifying cell kill and survival. In: Joiner M, Van der Kogel A. eds. Basic clinical radiobiology. 4th ed. Hodder Arnold, London:102–119CrossRef Joiner M (2009) Quantifying cell kill and survival. In: Joiner M, Van der Kogel A. eds. Basic clinical radiobiology. 4th ed. Hodder Arnold, London:102–119CrossRef
22.
go back to reference Cicone F, Minniti G, Romano A, Papa A, Scaringi C, Tavanti F, Bozzao A, Maurizi Enrici R, Scopinaro F (2015) Accuracy of F-DOPA PET and perfusion-MRI for differentiating radionecrotic from progressive brain metastases after radiosurgery. Eur J Nucl Med Mol Imaging 42:103–111CrossRefPubMed Cicone F, Minniti G, Romano A, Papa A, Scaringi C, Tavanti F, Bozzao A, Maurizi Enrici R, Scopinaro F (2015) Accuracy of F-DOPA PET and perfusion-MRI for differentiating radionecrotic from progressive brain metastases after radiosurgery. Eur J Nucl Med Mol Imaging 42:103–111CrossRefPubMed
23.
go back to reference Gray RJ (1988) A class of K-Sample tests for comparing the cumulative incidence of a competing risk. Ann Stat 16:1141–1154CrossRef Gray RJ (1988) A class of K-Sample tests for comparing the cumulative incidence of a competing risk. Ann Stat 16:1141–1154CrossRef
24.
go back to reference Minniti G, D’Angelillo RM, Scaringi C, Trodella LE, Clarke E, Matteucci P, Osti MF, Ramella S, Enrici RM, Trodella L (2014) Fractionated stereotactic radiosurgery for patients with brain metastases. J Neurooncol 117:295–301CrossRefPubMed Minniti G, D’Angelillo RM, Scaringi C, Trodella LE, Clarke E, Matteucci P, Osti MF, Ramella S, Enrici RM, Trodella L (2014) Fractionated stereotactic radiosurgery for patients with brain metastases. J Neurooncol 117:295–301CrossRefPubMed
25.
go back to reference Sperduto PW, Kased N, Roberge D, Xu Z, Shanley R, Luo X, Sneed PK, Chao ST, Weil RJ, Suh J, Bhatt A, Jensen AW, Brown PD, Shih HA, Kirkpatrick J, Gaspar LE, Fiveash JB, Chiang V, Knisely JP, Sperduto CM, Lin N, Mehta M (2012) Summary report on the graded prognostic assessment: an accurate and facile diagnosis-specific tool to estimate survival for patients with brain metastases. J Clin Oncol 30:419–425CrossRefPubMed Sperduto PW, Kased N, Roberge D, Xu Z, Shanley R, Luo X, Sneed PK, Chao ST, Weil RJ, Suh J, Bhatt A, Jensen AW, Brown PD, Shih HA, Kirkpatrick J, Gaspar LE, Fiveash JB, Chiang V, Knisely JP, Sperduto CM, Lin N, Mehta M (2012) Summary report on the graded prognostic assessment: an accurate and facile diagnosis-specific tool to estimate survival for patients with brain metastases. J Clin Oncol 30:419–425CrossRefPubMed
26.
go back to reference Larkin J, Chiarion-Sileni V, Gonzalez R, Grob JJ, Cowey CL, Lao CD, Schadendorf D, Dummer R, Smylie M, Rutkowski P, Ferrucci PF, Hill A, Wagstaff J, Carlino MS, Haanen JB, Maio M, Marquez-Rodas I, McArthur GA, Ascierto PA, Long GV, Callahan MK, Postow MA, Grossmann K, Sznol M, Dreno B, Bastholt L, Yang A, Rollin LM, Horak C, Hodi FS, Wolchok JD (2015) Combined Nivolumab and Ipilimumab or Monotherapy in untreated melanoma. N Engl J Med 373:23–34CrossRefPubMed Larkin J, Chiarion-Sileni V, Gonzalez R, Grob JJ, Cowey CL, Lao CD, Schadendorf D, Dummer R, Smylie M, Rutkowski P, Ferrucci PF, Hill A, Wagstaff J, Carlino MS, Haanen JB, Maio M, Marquez-Rodas I, McArthur GA, Ascierto PA, Long GV, Callahan MK, Postow MA, Grossmann K, Sznol M, Dreno B, Bastholt L, Yang A, Rollin LM, Horak C, Hodi FS, Wolchok JD (2015) Combined Nivolumab and Ipilimumab or Monotherapy in untreated melanoma. N Engl J Med 373:23–34CrossRefPubMed
27.
go back to reference Ribas A, Puzanov I, Dummer R, Schadendorf D, Hamid O, Robert C, Hodi FS, Schachter J, Pavlick AC, Lewis KD, Cranmer LD, Blank CU, O’Day SJ, Ascierto PA, Salama AK, Margolin KA, Loquai C, Eigentler TK, Gangadhar TC, Carlino MS, Agarwala SS, Moschos SJ, Sosman JA, Goldinger SM, Shapira-Frommer R, Gonzalez R, Kirkwood JM, Wolchok JD, Eggermont A, Li XN, Zhou W, Zernhelt AM, Lis J, Ebbinghaus S, Kang SP, Daud A (2015) Pembrolizumab versus investigator-choice chemotherapy for ipilimumab-refractory melanoma (KEYNOTE-002): a randomised, controlled, phase 2 trial. Lancet Oncol 16:908–918CrossRefPubMed Ribas A, Puzanov I, Dummer R, Schadendorf D, Hamid O, Robert C, Hodi FS, Schachter J, Pavlick AC, Lewis KD, Cranmer LD, Blank CU, O’Day SJ, Ascierto PA, Salama AK, Margolin KA, Loquai C, Eigentler TK, Gangadhar TC, Carlino MS, Agarwala SS, Moschos SJ, Sosman JA, Goldinger SM, Shapira-Frommer R, Gonzalez R, Kirkwood JM, Wolchok JD, Eggermont A, Li XN, Zhou W, Zernhelt AM, Lis J, Ebbinghaus S, Kang SP, Daud A (2015) Pembrolizumab versus investigator-choice chemotherapy for ipilimumab-refractory melanoma (KEYNOTE-002): a randomised, controlled, phase 2 trial. Lancet Oncol 16:908–918CrossRefPubMed
28.
go back to reference Goldberg SB, Gettinger SN, Mahajan A, Chiang AC, Herbst RS, Sznol M, Tsiouris AJ, Cohen J, Vortmeyer A, Jilaveanu L, Yu J, Hegde U, Speaker S, Madura M, Ralabate A, Rivera A, Rowen E, Gerrish H, Yao X, Chiang V, Kluger HM (2016) Pembrolizumab for patients with melanoma or non-small-cell lung cancer and untreated brain metastases: early analysis of a non-randomised, open-label, phase 2 trial. Lancet Oncol 17:976–983CrossRefPubMed Goldberg SB, Gettinger SN, Mahajan A, Chiang AC, Herbst RS, Sznol M, Tsiouris AJ, Cohen J, Vortmeyer A, Jilaveanu L, Yu J, Hegde U, Speaker S, Madura M, Ralabate A, Rivera A, Rowen E, Gerrish H, Yao X, Chiang V, Kluger HM (2016) Pembrolizumab for patients with melanoma or non-small-cell lung cancer and untreated brain metastases: early analysis of a non-randomised, open-label, phase 2 trial. Lancet Oncol 17:976–983CrossRefPubMed
29.
go back to reference Knisely JP, Yu JB, Flanigan J, Sznol M, Kluger HM, Chiang VL (2012) Radiosurgery for melanoma brain metastases in the ipilimumab era and the possibility of longer survival. J Neurosurg 117:227–233CrossRefPubMed Knisely JP, Yu JB, Flanigan J, Sznol M, Kluger HM, Chiang VL (2012) Radiosurgery for melanoma brain metastases in the ipilimumab era and the possibility of longer survival. J Neurosurg 117:227–233CrossRefPubMed
30.
31.
go back to reference Mathew M, Tam M, Ott PA, Pavlick AC, Rush SC, Donahue BR, Golfinos JG, Parker EC, Huang PP, Narayana A (2013) Ipilimumab in melanoma with limited brain metastases treated with stereotactic radiosurgery. Melanoma Res 23:191–195CrossRefPubMed Mathew M, Tam M, Ott PA, Pavlick AC, Rush SC, Donahue BR, Golfinos JG, Parker EC, Huang PP, Narayana A (2013) Ipilimumab in melanoma with limited brain metastases treated with stereotactic radiosurgery. Melanoma Res 23:191–195CrossRefPubMed
32.
go back to reference Blonigen BJ, Steinmetz RD, Levin L, Lamba MA, Warnick RE, Breneman JC (2010) Irradiated volume as a predictor of brain radionecrosis after linear accelerator stereotactic radiosurgery. Int J Radiat Oncol Biol Phys 77:996–1001CrossRefPubMed Blonigen BJ, Steinmetz RD, Levin L, Lamba MA, Warnick RE, Breneman JC (2010) Irradiated volume as a predictor of brain radionecrosis after linear accelerator stereotactic radiosurgery. Int J Radiat Oncol Biol Phys 77:996–1001CrossRefPubMed
33.
go back to reference Minniti G, Clarke E, Lanzetta G, Osti MF, Trasimeni G, Bozzao A, Romano A, Enrici RM (2011) Stereotactic radiosurgery for brain metastases: analysis of outcome and risk of brain radionecrosis. Radiat Oncol 15(6):48CrossRef Minniti G, Clarke E, Lanzetta G, Osti MF, Trasimeni G, Bozzao A, Romano A, Enrici RM (2011) Stereotactic radiosurgery for brain metastases: analysis of outcome and risk of brain radionecrosis. Radiat Oncol 15(6):48CrossRef
34.
go back to reference Kim YJ, Cho KH, Kim JY, Lim YK, Min HS, Lee SH, Kim HJ, Gwak HS, Yoo H, Lee SH (2011) Single-dose versus fractionated stereotactic radiotherapy for brain metastases. Int J Radiat Oncol Biol Phys 81:483–489CrossRefPubMed Kim YJ, Cho KH, Kim JY, Lim YK, Min HS, Lee SH, Kim HJ, Gwak HS, Yoo H, Lee SH (2011) Single-dose versus fractionated stereotactic radiotherapy for brain metastases. Int J Radiat Oncol Biol Phys 81:483–489CrossRefPubMed
35.
go back to reference Fokas E, Henzel M, Surber G et al (2012) Stereotactic radiosurgery and fractionated stereotactic radiotherapy: comparison of efficacy and toxicity in 260 patients with brain metastases. J Neurooncol 109:91–98CrossRefPubMed Fokas E, Henzel M, Surber G et al (2012) Stereotactic radiosurgery and fractionated stereotactic radiotherapy: comparison of efficacy and toxicity in 260 patients with brain metastases. J Neurooncol 109:91–98CrossRefPubMed
36.
go back to reference Aoyama H, Shirato H, Onimaru R, Kagei K, Ikeda J, Ishii N, Sawamura Y, Miyasaka K (2003) Hypofractionated stereotactic radiotherapy alone without whole brain irradiation for patients with solitary and oligo brain metastasis using noninvasive fixation of the skull. Int J Radiat Oncol Biol Phys 56:793–800CrossRefPubMed Aoyama H, Shirato H, Onimaru R, Kagei K, Ikeda J, Ishii N, Sawamura Y, Miyasaka K (2003) Hypofractionated stereotactic radiotherapy alone without whole brain irradiation for patients with solitary and oligo brain metastasis using noninvasive fixation of the skull. Int J Radiat Oncol Biol Phys 56:793–800CrossRefPubMed
37.
go back to reference Ernst-Stecken A, Ganslandt O, Lambrecht U, Sauer R, Grabenbauer G (2006) Phase II trial of hypofractionated stereotactic radiotherapy for brain metastases: results and toxicity. Radiother Oncol 8:18–24CrossRef Ernst-Stecken A, Ganslandt O, Lambrecht U, Sauer R, Grabenbauer G (2006) Phase II trial of hypofractionated stereotactic radiotherapy for brain metastases: results and toxicity. Radiother Oncol 8:18–24CrossRef
38.
go back to reference Wiggenraad R, Verbeek-de Kanter A, Kal HB, Taphoorn M, Vissers T, Struikmans H (2011) Dose-effect relation in stereotactic radiotherapy for brain metastases. A systematic review. Radiother Oncol 98:292–297CrossRefPubMed Wiggenraad R, Verbeek-de Kanter A, Kal HB, Taphoorn M, Vissers T, Struikmans H (2011) Dose-effect relation in stereotactic radiotherapy for brain metastases. A systematic review. Radiother Oncol 98:292–297CrossRefPubMed
Metadata
Title
Outcomes of postoperative stereotactic radiosurgery to the resection cavity versus stereotactic radiosurgery alone for melanoma brain metastases
Authors
Giuseppe Minniti
Sergio Paolini
Giancarlo D’Andrea
Gaetano Lanzetta
Francesco Cicone
Veronica Confaloni
Alessandro Bozzao
Vincenzo Esposito
Mattia Osti
Publication date
01-05-2017
Publisher
Springer US
Published in
Journal of Neuro-Oncology / Issue 3/2017
Print ISSN: 0167-594X
Electronic ISSN: 1573-7373
DOI
https://doi.org/10.1007/s11060-017-2394-z

Other articles of this Issue 3/2017

Journal of Neuro-Oncology 3/2017 Go to the issue