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Characterization of GaN dosimetry for 6 MV photon beam in clinical conditions
Institution:1. Service de Radiothérapie, Centre Hospitalier, Universitaire de Grenoble, BP 217, F-38043 Grenoble Cedex 9, France;2. Université Joseph Fourier, Grenoble, France;3. Institut des Nanotechnologies de Lyon, INL, CNRS UMR5270, Université de Lyon, Lyon F-69003, France;4. Université Lyon 1, Villeurbanne F-69622, France;1. Radiation Laboratory, Institute of Industrial Ecology, UB RAS, Ekaterinburg, Russia;2. Department of Experimental Physics, Ural Federal University, Ekaterinburg, Russia;3. Institute of Electrophysics, UB RAS, Ekaterinburg, Russia;1. Département de physique, de génie physique et d''optique et Centre de recherche sur le cancer, Université Laval, Québec, Canada;2. Département de radio-oncologie et CRCHU de Québec, CHU de Québec, Québec, Canada;1. German Research Centre for Geosciences GFZ, Telegrafenberg, D-14473 Potsdam, Germany;2. Institut für Geodäsie und Geoinformationstechnik, Technische Universität Berlin, Str. des 17. Juni 135, 10623, Berlin, Germany;3. Department of Physics, University of Lagos, Akoka, Yaba, Lagos, Nigeria;4. Faculty of Geodesy and Geomatics Engineering, K.N. Toosi University of Technology, Tehran, Iran;1. Institute of Nuclear Physics, Radzikowskiego 152, 31-342 Krakow, Poland;2. Charite-Universtatsmedizin Berlin, BerlinProtonen am Helmholtz-Zentrum Berlin, Hahn-Meitner-Platz 1, 14109 Berlin, Germany
Abstract:We characterized a recently proposed implantable GaN-based dosimeter in clinical conditions, for its application in external radiotherapy according to ESTRO (European Society for Radiotherapy & Oncology) practical guidelines. Our studies were carried out using a 6 MV photon beam with the dosimeter under test in a water tank or a PMMA phantom. They were focused on evaluating short term and long term reproducibility of measurements, and assessing the effects of parameters such as field size, source-skin distance, use of wedge filter, beam incidence, dose rate, accumulated dose, GaN-induced dose perturbation, air cavities and temperature. The estimated repeatability and reproducibility are better than 0.5% and 2% at 1σ respectively. There are no significant effects of the parameters under our studies, apart from field size and temperature. The field-size dependence is due to over-compensation of the GaN response method of the dosimeter, the resulting errors remain lower than 5% for field sizes up to 10 × 10 cm2. The temperature dependence mainly results from the GaN luminescence properties, and causes the GaN response to decrease steadily when increasing temperature, with a sensitivity of −1.4%/°C. The observed quasi-linear temperature dependence may facilitate the correction to improve the accuracy of measurements.
Keywords:Implantable GaN-based dosimeter  Dosimetric characterization  External beam radiotherapy
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