A formalism for reference dosimetry in photon beams in the presence of a magnetic field

Publication date

2018-06-11

Authors

van Asselen, BISNI 0000000391220676
Woodings, Simon J
Hackett, Sara L
van Soest, Theo L
Kok, J. G MISNI 0000000391574140
Raaymakers, Bas WORCID 0000-0002-8036-6808ISNI 0000000392005337
Wolthaus, JWHISNI 0000000395891207

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Abstract

A generic formalism is proposed for reference dosimetry in the presence of a magnetic field. Besides the regular correction factors from the conventional reference dosimetry formalisms, two factors are used to take into account magnetic field effects: 1) a dose conversion factor to correct for the change in local dose distribution and 2) a correction of the reading of the dosimeter used for the reference dosimetry measurements. The formalism was applied to the Elekta MRI-Linac, for which the 1.5 T magnetic field is orthogonal to the 7 MV photon beam. For this setup at reference conditions it was shown that the dose decreases with increasing magnetic field strength. The reduction in local dose for a 1.5 T transverse field, compared to no field is 0.51% ± 0.03% at the reference point of 10 cm depth. The effect of the magnetic field on the reading of the dosimeter was measured for two waterproof ionization chambers types (PTW 30013 and IBA FC65-G) before and after multiple ramp-up and ramp-downs of the magnetic field. The chambers were aligned perpendicular and parallel to the magnetic field. The corrections of the readings of the perpendicularly aligned chambers were 0.967 ± 0.002 and 0.957 ± 0.002 for respectively the PTW and IBA ionization chambers. In the parallel alignment the corrections were small; 0.997 ± 0.001 and 1.002 ± 0.003 for the PTW and IBA chamber respectively. The change in reading due to the magnetic field can be measured by individual departments. The proposed formalism can be used to determine the correction factors needed to establish the absorbed dose in a magnetic field. It requires Monte Carlo simulations of the local dose and measurements of the response of the dosimeter. The formalism was successfully implemented for the MRI-Linac and is applicable for other field strengths and geometries.

Keywords

MRI-Linac, MRI-guided radiotherapy, reference dosimetry, Radiometry/standards, Reference Standards, Humans, Photons, Magnetic Fields, Radiation Dosimeters/standards, Monte Carlo Method, Radiological and Ultrasound Technology, Radiology Nuclear Medicine and imaging, Research Support, Non-U.S. Gov't, Journal Article

Citation

van Asselen, B, Woodings, S J, Hackett, S L, van Soest, T L, Kok, J G M, Raaymakers, B W & Wolthaus, J W H 2018, 'A formalism for reference dosimetry in photon beams in the presence of a magnetic field', Physics in Medicine and Biology, vol. 63, no. 12, 125008, pp. 1-9. https://doi.org/10.1088/1361-6560/aac70e