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A universal dose-response curve for radiochromic films.

作者信息

Martín-Viera Cueto J A, Parra Osorio V, Moreno Sáiz C, Navarro Guirado F, Casado Villalón F J, Galán Montenegro P

机构信息

Radiofísica Hospitalaria, Hospital Regional Universitario, Málaga 29010, Spain.

出版信息

Med Phys. 2015 Jan;42(1):221-31. doi: 10.1118/1.4903301.

Abstract

PURPOSE

This paper presents a model for dose-response curves of radiochromic films. It is based on a modified version of single-hit model to take into account the growth experienced by lithium salt of pentacosa-10,12-diynoic acid polymers after irradiation.

METHODS

Polymer growth in radiochromic films is a critical phenomenon that can be properly described by means of percolation theory to provide an appropriate distribution function for polymer sizes. Resulting functional form is a power function featuring a critical exponent and two adjustable parameters. Moreover, these parameters act as scaling factors setting a natural scale for sensitometric curves where the dependence on channel sensitivity is removed. A unique reduced response curve is then obtained from all the color channels describing film behavior independently of film dosimetry system.

RESULTS

Resulting functional form has been successfully tested in several sensitometric curves from different Gafchromic EBT models, providing excellent agreement with experimental data in a wide dose range up to about 40 Gy and low dose uncertainty.

CONCLUSIONS

The model presented in this paper describes accurately the sensitometric curves of radiochromic films in wide dose ranges covering all typical ranges used in external radiotherapy. Resulting dose uncertainty is low enough to render a reasonably good performance in clinical applications. Due to cross-correlation, only one of the adjustable parameters is totally independent and characterizes film batches.

摘要

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