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THE USE OF THE EXRADIN W1 PLASTIC SCINTILLATOR FOR MEASUREMENTS IN EXTERNAL RADIOTHERAPY
I. Koniarová, O. Konček,
Jazyk angličtina Země Velká Británie
Typ dokumentu časopisecké články
PubMed
31769483
DOI
10.1093/rpd/ncz230
Knihovny.cz E-zdroje
- MeSH
- lidé MeSH
- monitorování radiace přístrojové vybavení metody normy MeSH
- plastické hmoty chemie MeSH
- radioterapie přístrojové vybavení MeSH
- scintilace - počítání přístrojové vybavení MeSH
- Check Tag
- lidé MeSH
- Publikační typ
- časopisecké články MeSH
The Exradin W1 plastic scintillator (Standard Imaging) was examined for measurement suitability in high-energy photon beams, high-energy electron beams and tomotherapy in terms of dose to water for reference fields. For photon beams, pulse repetition rate dependence, calibration stability, noise from the photodiode enclosure, detector motion during treatment, output factors, off-axis doses and percentage depth doses were tested. For electron and tomotherapy beams, energy non-dependence was verified. All features make the detector suitable in small and non-standards fields, and for electron beams.
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- $a Koniarová, Irena $u Department of Radiotherapy and X-ray Laboratory, National Radiation Protection Institute, Bartoškova 28, 14000 Prague 4, Czech Republic. Department Oncology, 2nd Faculty of Medicine, Motol University Hospital, Charles University in Prague and Motol University Hospital, V Úvalu 84, 15006 Prague 5, Czech Republic. Department of Radiotherapy and Oncology, Faculty Hospital Královské Vinohrady, Šrobárova 50, 10034 Prague 10, Czech Republic.
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- $a The Exradin W1 plastic scintillator (Standard Imaging) was examined for measurement suitability in high-energy photon beams, high-energy electron beams and tomotherapy in terms of dose to water for reference fields. For photon beams, pulse repetition rate dependence, calibration stability, noise from the photodiode enclosure, detector motion during treatment, output factors, off-axis doses and percentage depth doses were tested. For electron and tomotherapy beams, energy non-dependence was verified. All features make the detector suitable in small and non-standards fields, and for electron beams.
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- $a Konček, Ondřej $u Department Oncology, 2nd Faculty of Medicine, Motol University Hospital, Charles University in Prague and Motol University Hospital, V Úvalu 84, 15006 Prague 5, Czech Republic. UJP Praha a. s., Nad Kaminkou 1345, 15610 Prague 5, Czech Republic.
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