Physica Medica: European Journal of Medical Physics
Volume 27, Issue 2 , Pages 97-102, April 2011

Dose calculation algorithm of fast fine-heterogeneity correction for heavy charged particle radiotherapy

  • Nobuyuki Kanematsu

      Affiliations

    • Department of Accelerator and Medical Physics, Research Center for Charged Particle Therapy, National Institute of Radiological Sciences, 4-9-1 Anagawa, Inage-ku, Chiba 263-8555, Japan
    • Department of Quantum Science and Energy Engineering, School of Engineering, Tohoku University, 6-6 Aramaki Aza Aoba, Aoba-ku, Sendai 980-8579, Japan

Received 28 December 2009; received in revised form 28 April 2010; accepted 6 May 2010. published online 28 June 2010.

Abstract 

This work addresses computing techniques for dose calculations in treatment planning with proton and ion beams, based on an efficient kernel-convolution method referred to as grid-dose spreading (GDS) and accurate heterogeneity-correction method referred to as Gaussian beam splitting. The original GDS algorithm suffered from distortion of dose distribution for beams tilted with respect to the dose-grid axes. Use of intermediate grids normal to the beam field has solved the beam-tilting distortion. Interplay of arrangement between beams and grids was found as another intrinsic source of artifact. Inclusion of rectangular-kernel convolution in beam transport, to share the beam contribution among the nearest grids in a regulatory manner, has solved the interplay problem. This algorithmic framework was applied to a tilted proton pencil beam and a broad carbon-ion beam. In these cases, while the elementary pencil beams individually split into several tens, the calculation time increased only by several times with the GDS algorithm. The GDS and beam-splitting methods will complementarily enable accurate and efficient dose calculations for radiotherapy with protons and ions.

Keywords: Proton, Ion beam, Pencil beam algorithm, Treatment planning, Inhomogeneity correction

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PII: S1120-1797(10)00027-X

doi:10.1016/j.ejmp.2010.05.001

Physica Medica: European Journal of Medical Physics
Volume 27, Issue 2 , Pages 97-102, April 2011