The quenching of sensitivity of gafchromic films EBT3 with increasing radiation LET is studied and a proposed method for correcting the measured dose images is described. The method evaluates a correction coefficient in each position of the acquired image by multiplying the measured dose value for a calculated ratio of the absorbed dose to the measured one. Such calculated doses are obtained utilising knowledge about absorbed and measured doses for single Bragg peaks from protons of a generic energy E. This topic is under study and the software in MATLAB developed for achieving the correction of the measured images is continuously implemented. The first results to test the validity of the proposed method also for complex dose distributions are promising.

Correction method of measured images of absorbed dose for quenching effects due to relatively high LET / G.L.C. Gambarini, D. Bettega, G. Camoni, M. Felisi, A. Gebbia, E. Massari, V. Regazzoni, I. Veronese, D. Giove, A. Mirandola, M. Ciocca. - In: RADIATION PHYSICS AND CHEMISTRY. - ISSN 0969-806X. - (2017). [Epub ahead of print] [10.1016/j.radphyschem.2017.03.039]

Correction method of measured images of absorbed dose for quenching effects due to relatively high LET

G.L.C. Gambarini
Primo
;
D. Bettega
Secondo
;
A. Gebbia;I. Veronese;
2017

Abstract

The quenching of sensitivity of gafchromic films EBT3 with increasing radiation LET is studied and a proposed method for correcting the measured dose images is described. The method evaluates a correction coefficient in each position of the acquired image by multiplying the measured dose value for a calculated ratio of the absorbed dose to the measured one. Such calculated doses are obtained utilising knowledge about absorbed and measured doses for single Bragg peaks from protons of a generic energy E. This topic is under study and the software in MATLAB developed for achieving the correction of the measured images is continuously implemented. The first results to test the validity of the proposed method also for complex dose distributions are promising.
Dose image correction; LET; Proton beams; Sensitivity quenching; Radiation
Settore FIS/07 - Fisica Applicata(Beni Culturali, Ambientali, Biol.e Medicin)
2017
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/491757
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