Fast multifield optimization of the biological effect in ion therapy
- 6 June 2006
- journal article
- Published by IOP Publishing in Physics in Medicine & Biology
- Vol. 51 (12) , 3127-3140
- https://doi.org/10.1088/0031-9155/51/12/009
Abstract
In this paper, we present a new technique for simultaneous multifield optimization of the biological effect (i.e. relative biological effectiveness times dose) for intensity modulated radiotherapy with ion beams. It offers complete inverse treatment planning by taking into account planning constraints for the target volume as well as for organs at risk. The approach is based on the mixed irradiation formalism of the linear-quadratic model from radiobiology. We employ a novel objective function to directly optimize the biological effect rather than the physical dose. The required biological input data are reduced to a minimum and are completely independent from the optimization itself. They can be derived from any radiobiological model or even from directly measured data. The new optimization method was fully integrated into our inverse treatment planning tool KonRad. Comparisons with the TRiP98 treatment planning code were done for simple spread-out Bragg peaks as well as for three-dimensional treatment plans, where all fields were optimized separately. While the agreement between both planning systems was very good, the calculation time was substantially reduced in KonRad. By enabling the multifield optimization, the quality of the treatment plans and the sparing of healthy tissues can be clearly improved.Keywords
This publication has 36 references indexed in Scilit:
- Biological Gain of Carbon-ion Radiotherapy for the Early Response of Tumor Growth Delay and against Early Response of Skin Reaction in MiceJournal of Radiation Research, 2005
- Status of the clinical work at HyogoRadiotherapy and Oncology, 2004
- Heavy Ion Therapy: Status and PerspectivesTechnology in Cancer Research & Treatment, 2003
- Treatment planning for the layer‐stacking irradiation system for three‐dimensional conformal heavy‐ion radiotherapyMedical Physics, 2002
- Treatment planning for heavy ion radiotherapy: clinical implementation and applicationPhysics in Medicine & Biology, 2001
- Biophysical characteristics of HIMAC clinical irradiation system for heavy-ion radiation therapyInternational Journal of Radiation Oncology*Biology*Physics, 1999
- Experience in charged particle irradiation of tumors of the skull base: 1977–1992International Journal of Radiation Oncology*Biology*Physics, 1994
- Magnetic scanning system for heavy ion therapyNuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 1993
- Treatment planning for heavy ion radiotherapyInternational Journal of Radiation Oncology*Biology*Physics, 1979
- Radiobiological characterization of the inactivating events produced in mammalian cells by helium and heavy ionsInternational Journal of Radiation Oncology*Biology*Physics, 1977