| Literature DB >> 25472758 |
Dirk Rades1, Stefan Huttenlocher2, Dagmar Hornung3, Oliver Blanck4, Steven E Schild5, Dorothea Fischer6.
Abstract
BACKGROUND: An important issue in palliative radiation oncology is the whether whole-brain radiotherapy should be added to radiosurgery when treating a limited number of brain metastases. To optimize personalized treatment of cancer patients with brain metastases, the value of whole-brain radiotherapy should be described separately for each tumor entity. This study investigated the role of whole-brain radiotherapy added to radiosurgery in breast cancer patients.Entities:
Mesh:
Year: 2014 PMID: 25472758 PMCID: PMC4265339 DOI: 10.1186/s13014-014-0267-6
Source DB: PubMed Journal: Radiat Oncol ISSN: 1748-717X Impact factor: 3.481
Characteristics of the treatment groups
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|---|---|---|---|
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| <20 Gy (n = 23) | 10 (33) | 13 (46) | |
| ≥20 Gy (n = 35) | 20 (67) | 15 (54) | 0.63 |
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| ≤59 years (n = 34) | 17 (57) | 17 (61) | |
| ≥60 years (n = 24) | 13 (43) | 11 (39) | 0.94 |
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| 0-1 (n = 40) | 20 (67) | 20 (71) | |
| 2 (n = 18) | 10 (33) | 8 (29) | 0.93 |
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| 1 (n = 46) | 25 (83) | 21 (75) | |
| 2-3 (n = 12) | 5 (17) | 7 (25) | 0.84 |
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| ≤10 mm (n = 28) | 15 (50) | 13 (46) | |
| ≥11 mm (n = 30) | 15 (50) | 15 (54) | 0.95 |
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| Supratentorial (n = 39) | 20 (67) | 19 (68) | |
| Infratentorial ± supratentorial (n = 19) | 10 (33) | 9 (32) | 0.98 |
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| No (n = 24) | 11 (37) | 13 (46) | |
| Yes (n = 34) | 19 (63) | 15 (54) | 0.75 |
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| ≤48 months (n = 30) | 15 (50) | 15 (54) | |
| ≥49 months (n = 28) | 15 (50) | 13 (46) | 0.95 |
P-values were obtained with the Chi-square test.
Local control of the irradiated brain metastases (univariate analysis)
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|---|---|---|---|
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| Radiosurgery alone (n = 30) | 86 | 79 | |
| Radiosurgery + WBI (n = 28) | 96 | 92 | 0.59 |
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| <20 Gy (n = 23) | 83 | 78 | |
| ≥20 Gy (n = 35) | 97 | 90 | 0.23 |
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| ≤59 years (n = 34) | 97 | 91 | |
| ≥60 years (n = 24) | 83 | 77 | 0.066 |
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| 0-1 (n = 40) | 95 | 87 | |
| 2 (n = 18) | 82 | 82 | 0.69 |
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| 1 (n = 46) | 91 | 83 | |
| 2-3 (n = 12) | 92 | 92 | 0.58 |
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| ≤10 mm (n = 28) | 93 | 89 | |
| ≥11 mm (n = 30) | 90 | 81 | 0.66 |
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| Supratentorial (n = 39) | 92 | 83 | |
| Infratentorial ± supratentorial (n = 19) | 89 | 89 | 0.35 |
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| No (n = 24) | 88 | 79 | |
| Yes (n = 34) | 94 | 91 | 0.31 |
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| ≤48 months (n = 30) | 93 | 86 | |
| ≥49 months (n = 28) | 89 | 85 | 0.61 |
Figure 1Kaplan-Meier analysis of freedom from new brain metastases: Radiosurgery radiosurgery plus whole-brain radiotherapy.
Freedom from new brain metastases (univariate analysis)
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| Radiosurgery alone (n = 30) | 79 | 68 | |
| Radiosurgery + WBI (n = 28) | 96 | 89 |
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| <20 Gy (n = 23) | 78 | 74 | |
| ≥20 Gy (n = 35) | 94 | 81 | 0.72 |
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| ≤59 years (n = 34) | 91 | 88 | |
| ≥60 years (n = 24) | 83 | 61 | 0.20 |
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| 0-1 (n = 40) | 90 | 82 | |
| 2 (n = 18) | 82 | 66 |
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| 1 (n = 46) | 87 | 74 | |
| 2-3 (n = 12) | 92 | 92 | 0.98 |
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| ≤10 mm (n = 28) | 89 | 81 | |
| ≥11 mm (n = 30) | 86 | 74 | 0.21 |
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| Supratentorial (n = 39) | 89 | 75 | |
| Infratentorial ± supratentorial (n = 19) | 84 | 84 | 0.50 |
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| No (n = 24) | 92 | 73 | |
| Yes (n = 34) | 85 | 82 | 0.89 |
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| ≤48 months (n = 30) | 90 | 82 | |
| ≥49 months (n = 28) | 86 | 73 | 0.33 |
Significant p-values are given in bold.
Survival (univariate analysis)
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| Radiosurgery alone (n = 30) | 80 | 63 | |
| Radiosurgery + WBI (n = 28) | 93 | 71 | 0.48 |
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| <20 Gy (n = 23) | 83 | 65 | |
| ≥20 Gy (n = 35) | 89 | 69 | 0.56 |
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| ≤59 years (n = 34) | 91 | 76 | |
| ≥60 years (n = 24) | 79 | 54 | 0.054 |
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| 0-1 (n = 40) | 98 | 85 | |
| 2 (n = 18) | 61 | 28 |
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| 1 (n = 46) | 83 | 63 | |
| 2-3 (n = 12) | 100 | 83 | 0.67 |
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| ≤10 mm (n = 28) | 89 | 79 | |
| ≥11 mm (n = 30) | 83 | 57 | 0.16 |
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| Supratentorial (n = 39) | 85 | 64 | |
| Infratentorial ± supratentorial (n = 19) | 89 | 74 | 0.22 |
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| No (n = 24) | 88 | 75 | |
| Yes (n = 34) | 85 | 62 | 0.38 |
Significant p-values are given in bold.