Radiation doses to brain substructures associated with cognition in radiotherapy of pediatric brain tumors

Authors

  • Laura Toussaint Danish Centre for Particle Therapy, Aarhus, Denmark
  • Daniel J. Indelicato Department of Radiation Oncology, University of Florida, Jacksonville, FL, USA
  • Camilla H. Stokkevåg Department of Oncology and Medical Physics, Haukeland University Hospital, Bergen, Norway;  Department of Physics and Technology, University of Bergen, Bergen, Norway
  • Yasmin Lassen-Ramshad Danish Centre for Particle Therapy, Aarhus, Denmark
  • Catia Pedro Department of Radiotherapy, Instituto Português de Oncologia de Lisboa Francisco Gentil, EPE, Lisbon, Portugal
  • Ronni Mikkelsen Department of Neuroradiology/Biomedicine, Aarhus University Hospital, Aarhus, Denmark
  • Marcos Di Pinto Department of Radiation Oncology, University of Florida, Jacksonville, FL, USA
  • Zuofeng Li Department of Radiation Oncology, University of Florida, Jacksonville, FL, USA
  • Stella Flampouri Department of Radiation Oncology, University of Florida, Jacksonville, FL, USA
  • Anne Vestergaard Danish Centre for Particle Therapy, Aarhus, Denmark
  • Jørgen B. B. Petersen Danish Centre for Particle Therapy, Aarhus, Denmark
  • Henrik Schrøder Department of pediatrics, Aarhus University Hospital, Aarhus, Denmark
  • Morten Høyer Danish Centre for Particle Therapy, Aarhus, Denmark
  • Ludvig P. Muren Danish Centre for Particle Therapy, Aarhus, Denmark

DOI:

https://doi.org/10.1080/0284186X.2019.1629014

Abstract

Background: Several brain substructures associated with cognition (BSCs) are located close to typical pediatric brain tumors. Pediatric patients therefore have considerable risks of neurocognitive impairment after brain radiotherapy. In this study, we investigated the radiation doses received by BSCs for three common locations of pediatric brain tumor entities.

Material and methods: For ten patients in each group [posterior fossa ependymoma (PFE), craniopharyngioma (CP), and hemispheric ependymoma (HE)], the cumulative fraction of BSCs volumes receiving various dose levels were analyzed. We subsequently explored the differences in dose pattern between the three groups and used available dose response models from the literature to estimate treatment-induced intelligence quotient (IQ) decline.

Results: Doses to BSCs were found to differ considerably between the groups, depending on their position relative to the tumor. Large inter-patient variations were observed in the ipsilateral structures of the HE groups, and at low doses for all three groups. IQ decline estimates differed depending on the model applied, presenting larger variations in the HE group.

Conclusion: While there were notable differences in the dose patterns between the groups, the extent of estimated IQ decline depended more on the model applied. This inter-model variability should be considered in dose–effect assessments on cognitive outcomes of pediatric patients.

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Published

2019-10-03

How to Cite

Toussaint, L., Indelicato, D. J., Stokkevåg, C. H., Lassen-Ramshad, Y., Pedro, C., Mikkelsen, R., … Muren, L. P. (2019). Radiation doses to brain substructures associated with cognition in radiotherapy of pediatric brain tumors. Acta Oncologica, 58(10), 1457–1462. https://doi.org/10.1080/0284186X.2019.1629014