In this work, the performance of a microDiamond detector in a scanned proton beam is studied and its potential role in the dosimetric characterization of proton pencil beams is assessed. The linearity of the detector response with the absorbed dose and the dependence on the dose-rate were tested. The depth-dose curve and the lateral dose profiles of a proton pencil beam were measured and compared to reference data. The feasibility of calibrating the beam monitor chamber with a microDiamond detector was also studied. It was found the detector reading is linear with the absorbed dose to water (down to few cGy) and the detector response is independent of both the dose-rate (up to few Gy/s) and the proton beam energy (within the whole clinically-relevant energy range). The detector showed a good performance in depth-dose curve and lateral dose profile measurements; and it might even be used to calibrate the beam monitor chambers-provided it is cross-calibrated against a reference ionization chamber. In conclusion, the microDiamond detector was proved capable of performing an accurate dosimetric characterization of proton pencil beams. © 2016.

Gomà, C., Marinelli, M., Safai, S., VERONA RINATI, G., Würfel, J. (2016). The role of a microDiamond detector in the dosimetry of proton pencil beams. ZEITSCHRIFT FUR MEDIZINISCHE PHYSIK, 26(1), 88-94 [10.1016/j.zemedi.2015.08.003].

The role of a microDiamond detector in the dosimetry of proton pencil beams

MARINELLI, MARCO;VERONA RINATI, GIANLUCA;
2016-01-01

Abstract

In this work, the performance of a microDiamond detector in a scanned proton beam is studied and its potential role in the dosimetric characterization of proton pencil beams is assessed. The linearity of the detector response with the absorbed dose and the dependence on the dose-rate were tested. The depth-dose curve and the lateral dose profiles of a proton pencil beam were measured and compared to reference data. The feasibility of calibrating the beam monitor chamber with a microDiamond detector was also studied. It was found the detector reading is linear with the absorbed dose to water (down to few cGy) and the detector response is independent of both the dose-rate (up to few Gy/s) and the proton beam energy (within the whole clinically-relevant energy range). The detector showed a good performance in depth-dose curve and lateral dose profile measurements; and it might even be used to calibrate the beam monitor chambers-provided it is cross-calibrated against a reference ionization chamber. In conclusion, the microDiamond detector was proved capable of performing an accurate dosimetric characterization of proton pencil beams. © 2016.
2016
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore FIS/07 - FISICA APPLICATA (A BENI CULTURALI, AMBIENTALI, BIOLOGIA E MEDICINA)
English
Article; controlled study; dosimetry; measurement error; microDiamond detector; proton radiation; radiation absorption; radiation detector; radiation dose; radiation response; reproducibility; Microdiamond detector; Proton therapy; Radiation dosimetry
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84940056442&partnerID=40&md5=7d1d8cea352a176f526fa8df2d9bce0a
Gomà, C., Marinelli, M., Safai, S., VERONA RINATI, G., Würfel, J. (2016). The role of a microDiamond detector in the dosimetry of proton pencil beams. ZEITSCHRIFT FUR MEDIZINISCHE PHYSIK, 26(1), 88-94 [10.1016/j.zemedi.2015.08.003].
Gomà, C; Marinelli, M; Safai, S; VERONA RINATI, G; Würfel, J
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/166651
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