Literature DB >> 24320488

Evaluation of the dosimetric properties of a synthetic single crystal diamond detector in high energy clinical proton beams.

A K Mandapaka1, A Ghebremedhin, B Patyal, Marco Marinelli, G Prestopino, C Verona, G Verona-Rinati.   

Abstract

PURPOSE: To investigate the dosimetric properties of a synthetic single crystal diamond Schottky diode for accurate relative dose measurements in large and small field high-energy clinical proton beams.
METHODS: The dosimetric properties of a synthetic single crystal diamond detector were assessed by comparison with a reference Markus parallel plate ionization chamber, an Exradin A16 microionization chamber, and Exradin T1a ion chamber. The diamond detector was operated at zero bias voltage at all times. Comparative dose distribution measurements were performed by means of Fractional depth dose curves and lateral beam profiles in clinical proton beams of energies 155 and 250 MeV for a 14 cm square cerrobend aperture and 126 MeV for 3, 2, and 1 cm diameter circular brass collimators. ICRU Report No. 78 recommended beam parameters were used to compare fractional depth dose curves and beam profiles obtained using the diamond detector and the reference ionization chamber. Warm-up∕stability of the detector response and linearity with dose were evaluated in a 250 MeV proton beam and dose rate dependence was evaluated in a 126 MeV proton beam. Stem effect and the azimuthal angle dependence of the diode response were also evaluated.
RESULTS: A maximum deviation in diamond detector signal from the average reading of less than 0.5% was found during the warm-up irradiation procedure. The detector response showed a good linear behavior as a function of dose with observed deviations below 0.5% over a dose range from 50 to 500 cGy. The detector response was dose rate independent, with deviations below 0.5% in the investigated dose rates ranging from 85 to 300 cGy∕min. Stem effect and azimuthal angle dependence of the diode signal were within 0.5%. Fractional depth dose curves and lateral beam profiles obtained with the diamond detector were in good agreement with those measured using reference dosimeters.
CONCLUSIONS: The observed dosimetric properties of the synthetic single crystal diamond detector indicate that its behavior is proton energy independent and dose rate independent in the investigated energy and dose rate range and it is suitable for accurate relative dosimetric measurements in large as well as in small field high energy clinical proton beams.

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Year:  2013        PMID: 24320488     DOI: 10.1118/1.4828777

Source DB:  PubMed          Journal:  Med Phys        ISSN: 0094-2405            Impact factor:   4.071


  3 in total

1.  Comparison between small radiation therapy electron beams collimated by Cerrobend and tubular applicators.

Authors:  Cristina Di Venanzio; Marco Marinelli; Alessia Tonnetti; Gianluca Verona-Rinati; Paolo Bagalà; Maria Daniela Falco; Antonio Stefano Guerra; Maria Pimpinella
Journal:  J Appl Clin Med Phys       Date:  2015-01-08       Impact factor: 2.102

2.  Verification of a Monte Carlo dose calculation engine in proton minibeam radiotherapy in a passive scattering beamline for preclinical trials.

Authors:  Consuelo Guardiola; Ludovic De Marzi; Yolanda Prezado
Journal:  Br J Radiol       Date:  2020-01-06       Impact factor: 3.039

3.  Characterization of a new commercial single crystal diamond detector for photon- and proton-beam dosimetry.

Authors:  Yuichi Akino; Archana Gautam; Len Coutinho; Jan Würfel; Indra J Das
Journal:  J Radiat Res       Date:  2015-08-12       Impact factor: 2.724

  3 in total

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