Zugriffsnummer 44686
Dokumenttyp Zeitschriftenartikel
Peer Review mit Peer Review
Sprache Englisch
Titel 2D range modulator for high-precision water calorimetry in scanned carbon-ion beams
Autor(in); Institution
Holm, Kim; 6.2, Dosimetrie für Strahlentherapie und Röntgendiagnostik, PTB-Braunschweig
Weber, Ulrich; GSI, Darmstadt, GERMANY
Simeonov, Yuri; THM, Gießen, GERMANY
Krauss, Achim; 6.2, Dosimetrie für Strahlentherapie und Röntgendiagnostik, PTB-Braunschweig
Jäkel, Oliver; DKFZ, Heidelberg, GERMANY
Greilich, Steffen; DKFZ, Heidelberg, GERMANY
Quelle/Jahr Physics in Medicine and Biology: 65 (2020), 21, 1 - 15
Artikelnummer 215003
ISSN 0031-9155 (PRINT) ; 1361-6560 (ONLINE)
DOI
Verlag Bristol: IOP Publishing
Freie Schlagworte carbon-ion beams ; 2D range modulator ; spread-out Bragg peak ; water calorimetry
Zusammenfassung Ionization chamber-based dosimetry for carbon-ion beams still shows a significantly higher standard uncertainty than high-energy photon dosimetry. This is mainly caused by the high standard uncertainty of the correction factor for beam quality kQ. Due to a lack of experimental data, the given values for kQ are based on theoretical calculations. To reduce this standard uncertainty, kQ factors for different irradiation conditions and ICs can be determined experimentally by means of water calorimetry. To perform such measurements in a spread-out Bragg peak (SOBP) for a scanned carbon-ion beam, we describe the process of creating an almost cubic dose distribution of about 6 x 6 x 6 cm3 using a 2D range modulator. The aim is to achieve a field homogeneity with a standard deviation of measured dose values in the middle of the SOBP (over a lateral range and a depth of about 4 cm) below 2% within a scanning time of under 100 s, applying a dose larger than 1 Gy. This papers describes the optimization and characterization of the dose distribution in detail.

Zitierung

Holm, K., Weber, U., Simeonov, Y., Krauss, A., Jäkel, O., & Greilich, S. (2020). 2D range modulator for high-precision water calorimetry in scanned carbon-ion beams. Physics in Medicine and Biology, 65(21), 1–15. https://doi.org/10.1088/1361-6560/aba6d5

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