English

The grid-dose-spreading algorithm for dose distribution calculation in heavy charged particle radiotherapy

Medical Physics 2011-11-10 v2

Abstract

A new variant of the pencil-beam (PB) algorithm for dose distribution calculation for radiotherapy with protons and heavier ions, the grid-dose spreading (GDS) algorithm, is proposed. The GDS algorithm is intrinsically faster than conventional PB algorithms due to approximations in convolution integral, where physical calculations are decoupled from simple grid-to-grid energy transfer. It was effortlessly implemented to a carbon-ion radiotherapy treatment planning system to enable realistic beam blurring in the field, which was absent with the broad-beam (BB) algorithm. For a typical prostate treatment, the slowing factor of the GDS algorithm relative to the BB algorithm was 1.4, which is a great improvement over the conventional PB algorithms with a typical slowing factor of several tens. The GDS algorithm is mathematically equivalent to the PB algorithm for horizontal and vertical coplanar beams commonly used in carbon-ion radiotherapy while dose deformation within the size of the pristine spread occurs for angled beams, which was within 3 mm for a single proton pencil beam of 3030^\circ incidence, and needs to be assessed against the clinical requirements and tolerances in practical situations.

Keywords

Cite

@article{arxiv.0707.4144,
  title  = {The grid-dose-spreading algorithm for dose distribution calculation in heavy charged particle radiotherapy},
  author = {Nobuyuki Kanematsu and Shunsuke Yonai and Azusa Ishizaki},
  journal= {arXiv preprint arXiv:0707.4144},
  year   = {2011}
}

Comments

7 pages, 3 figures

R2 v1 2026-06-21T09:02:30.118Z