Radiotherapy planning for glioblastoma based on a tumor growth model: implications for spatial dose redistribution

J Unkelbach, BH Menze, E Konukoglu… - Physics in Medicine …, 2014 - iopscience.iop.org
Gliomas differ from many other tumors as they grow infiltratively into the brain parenchyma
rather than forming a solid tumor mass with a well-defined boundary. Tumor cells can be …

[PDF][PDF] Radiotherapy planning for glioblastoma based on a tumor growth model: implications for spatial dose redistribution

J Unkelbach, B Menze, E Konukoglu, F Dittmann… - scholar.archive.org
Gliomas differ from many other tumors as they grow infiltratively into the brain parenchyma
rather than forming a solid tumor mass with a well-defined boundary. Tumor cells can be …

Radiotherapy planning for glioblastoma based on a tumor growth model: implications for spatial dose redistribution

J Unkelbach, F Dittmann, HA Shih, BH Menze… - Physics in Medicine and …, 2014 - osti.gov
Gliomas differ from many other tumors as they grow infiltratively into the brain parenchyma
rather than forming a solid tumor mass with a well-defined boundary. Tumor cells can be …

[引用][C] Radiotherapy planning for glioblastoma based on a tumor growth model: Implications for spatial dose redistribution

J Unkelbach, BH Menze… - … in Medicine and …, 2014 - research-collection.ethz.ch
Radiotherapy planning for glioblastoma based on a tumor growth model - Research Collection
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Radiotherapy planning for glioblastoma based on a tumor growth model: implications for spatial dose redistribution

J Unkelbach, F Dittmann, HA Shih, BH Menze… - Physics in Medicine …, 2014 - inis.iaea.org
[en] Gliomas differ from many other tumors as they grow infiltratively into the brain
parenchyma rather than forming a solid tumor mass with a well-defined boundary. Tumor …

Radiotherapy planning for glioblastoma based on a tumor growth model: implications for spatial dose redistribution

J Unkelbach, BH Menze… - … in medicine and …, 2014 - pubmed.ncbi.nlm.nih.gov
Gliomas differ from many other tumors as they grow infiltratively into the brain parenchyma
rather than forming a solid tumor mass with a well-defined boundary. Tumor cells can be …

Radiotherapy planning for glioblastoma based on a tumor growth model: implications for spatial dose redistribution

J Unkelbach, B Menze, E Konukoglu… - Physics in Medicine …, 2013 - inria.hal.science
Gliomas differ from many other tumors as they grow infiltratively into the brain parenchyma
rather than forming a solid tumor mass with a well-defined boundary. Tumor cells can be …

Radiotherapy planning for glioblastoma based on a tumor growth model: implications for spatial dose redistribution

J Unkelbach, B Menze, E Konukoglu… - Physics in Medicine …, 2013 - hal.science
Gliomas differ from many other tumors as they grow infiltratively into the brain parenchyma
rather than forming a solid tumor mass with a well-defined boundary. Tumor cells can be …

Radiotherapy planning for glioblastoma based on a tumor growth model: implications for spatial dose redistribution

J Unkelbach, BH Menze, E Konukoglu… - Physics in Medicine …, 2014 - ui.adsabs.harvard.edu
Gliomas differ from many other tumors as they grow infiltratively into the brain parenchyma
rather than forming a solid tumor mass with a well-defined boundary. Tumor cells can be …

Radiotherapy planning for glioblastoma based on a tumor growth model: implications for spatial dose redistribution.

J Unkelbach, BH Menze, E Konukoglu… - Physics in Medicine …, 2014 - europepmc.org
Gliomas differ from many other tumors as they grow infiltratively into the brain parenchyma
rather than forming a solid tumor mass with a well-defined boundary. Tumor cells can be …