Characterization of One-Dimensional Fiber-Optic Scintillating Detectors for Electron-Beam Therapy Dosimetry

In this study, a one-dimensional fiber-optic scintillating detector was developed for electron-beam therapy dosimetry. Each fiber-optic detector contains an organic scintillator as a sensitive volume and it is embedded and arrayed in a plastic phantom to measure one-dimensional high-energy electron-...

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Veröffentlicht in:IEEE transactions on nuclear science 2008-10, Vol.55 (5), p.2627-2631
Hauptverfasser: Lee, Bongsoo, Jang, Kyoung Won, Cho, Dong Hyun, Yoo, Wook Jae, Shin, Sang Hun, Tack, Gye-Rae, Chung, Soon-Cheol, Kim, Sin, Cho, Hyosung, Park, Byung Gi, Moon, Joo Hyun, Kim, Siyong
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Sprache:eng
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Zusammenfassung:In this study, a one-dimensional fiber-optic scintillating detector was developed for electron-beam therapy dosimetry. Each fiber-optic detector contains an organic scintillator as a sensitive volume and it is embedded and arrayed in a plastic phantom to measure one-dimensional high-energy electron-beam profiles of clinical linear accelerators. Plastic optical fibers guide the scintillating light which each detector probe generates to a photodiode array. The one-dimensional electron-beam profiles in the plastic phantom were measured in two different field sizes and for two electron-beam energies. Also, isodose and two-dimensional dose distributions in the plastic phantom were obtained using the one-dimensional scintillating detector array with two different electron beam energies.
ISSN:0018-9499
1558-1578
DOI:10.1109/TNS.2008.2002578