A comprehensive spectrometry study of a stray neutron radiation field in scanning proton therapy

The purpose of this study is to characterize the stray neutron radiation field in scanning proton therapy considering a pediatric anthropomorphic phantom and a clinically-relevant beam condition. Using two extended-range Bonner sphere spectrometry systems (ERBSS), Working Group 9 of the European Rad...

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Veröffentlicht in:Physics in medicine & biology 2016-06, Vol.61 (11), p.4127-4140
Hauptverfasser: Mares, Vladimir, Romero-Expósito, Maite, Farah, Jad, Trinkl, Sebastian, Domingo, Carles, Dommert, Martin, Stolarczyk, Liliana, Van Ryckeghem, Laurent, Wielunski, Marek, Olko, Pawel, Harrison, Roger M
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Sprache:eng
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Zusammenfassung:The purpose of this study is to characterize the stray neutron radiation field in scanning proton therapy considering a pediatric anthropomorphic phantom and a clinically-relevant beam condition. Using two extended-range Bonner sphere spectrometry systems (ERBSS), Working Group 9 of the European Radiation Dosimetry Group measured neutron spectra at ten different positions around a pediatric anthropomorphic phantom irradiated for a brain tumor with a scanning proton beam. This study compares the different systems and unfolding codes as well as neutron spectra measured in similar conditions around a water tank phantom. The ten spectra measured with two ERBSS systems show a generally similar thermal component regardless of the position around the phantom while high energy neutrons (above 20 MeV) were only registered at positions near the beam axis (at 0°, 329° and 355°). Neutron spectra, fluence and ambient dose equivalent, H *(10), values of both systems were in good agreement (
ISSN:0031-9155
1361-6560
DOI:10.1088/0031-9155/61/11/4127