Dosimetric verification of complex radiotherapy with a 3D optically based dosimetry system: Dose painting and target tracking

Authors

  • Peter S. Skyt Department of Medical Physics, Aarhus University/Aarhus University Hospital, Aarhus, Denmark;Department of Physics and Astronomy, Aarhus University, Aarhus, Denmark
  • Jørgen B. B. Petersen Department of Medical Physics, Aarhus University/Aarhus University Hospital, Aarhus, Denmark
  • Esben S. Yates Department of Medical Physics, Aarhus University/Aarhus University Hospital, Aarhus, Denmark
  • Per R. Poulsen Department of Oncology, Aarhus University Hospital, Aarhus, Denmark
  • Thomas L. Ravkilde Department of Oncology, Aarhus University Hospital, Aarhus, Denmark
  • Peter Balling Department of Physics and Astronomy, Aarhus University, Aarhus, Denmark
  • Ludvig P. Muren Department of Medical Physics, Aarhus University/Aarhus University Hospital, Aarhus, Denmark

DOI:

https://doi.org/10.3109/0284186X.2013.813965

Abstract

Background. The increasing complexity of radiotherapy (RT) has motivated research into three-dimensional (3D) dosimetry. In this study we investigate the use of 3D dosimetry with polymerizing gels and optical computed tomography (optical CT) as a verification tool for complex RT: dose painting and target tracking. Materials and Methods. For the dose painting studies, two dosimeters were irradiated with a seven-field intensity modulated radiotherapy (IMRT) plan with and without dose prescription based on a hypoxia image dataset of a head and neck patient. In the tracking experiments, two dosimeters were irradiated with a volumetric modulated arc therapy (VMAT) plan with and without clinically measured prostate motion and a third with both motion and target tracking. To assess the performance, 3D gamma analyses were performed between measured and calculated stationary dose distributions. Results. Gamma pass-rates of 95.3% and 97.3% were achieved for the standard and dose-painted IMRT plans. Gamma pass-rates of 91.4% and 54.4% were obtained for the stationary and moving dosimeter, respectively, while tracking increased the pass-rate for the moving dosimeter to 90.4%. Conclusions. This study has shown that the 3D dosimetry system can reproduce and thus verify complex dose distributions, also when influenced by motion.

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Published

2013-10-01

How to Cite

Skyt, P. S., Petersen, J. B. B., Yates, E. S., Poulsen, P. R., Ravkilde, T. L., Balling, P., & Muren, L. P. (2013). Dosimetric verification of complex radiotherapy with a 3D optically based dosimetry system: Dose painting and target tracking. Acta Oncologica, 52(7), 1445–1450. https://doi.org/10.3109/0284186X.2013.813965