Published 2012 | Version v1
Journal article

3D dose reconstruction for narrow beams using ion chamber array measurements

  • 1. Lausanne Univ., University Hospital Centre (Switzerland). Inst. of Radiation Physics
  • 2. Lausanne Univ., University Hospital Centre (Switzerland). Radio-Oncology Dept.

Description

3D dose reconstruction is a verification of the delivered absorbed dose. Our aim was to describe and evaluate a 3D dose reconstruction method applied to phantoms in the context of narrow beams. A solid water phantom and a phantom containing a bone-equivalent material were irradiated on a 6 MV linac. The transmitted dose was measured by using one array of a 2D ion chamber detector. The dose reconstruction was obtained by an iterative algorithm. A phantom set-up error and organ interfraction motion were simulated to test the algorithm sensitivity. In all configurations convergence was obtained within three iterations. A local reconstructed dose agreement of at least 3% / 3 mm with respect to the planned dose was obtained, except in a few points of the penumbra. The reconstructed primary fluences were consistent with the planned ones, which validates the whole reconstruction process. The results validate our method in a simple geometry and for narrow beams. The method is sensitive to a set-up error of a heterogeneous phantom and interfraction heterogeneous organ motion. (orig.)

Additional details

Publishing Information

Journal Title
Zeitschrift fuer Medizinische Physik
Journal Volume
22
Journal Issue
2
Journal Page Range
p. 123-132
ISSN
0939-3889