How much should you worry about contaminant neutrons in spatially fractionated grid radiation therapy?

Author:

Mahmoudi Farshid,Mohammadi Najmeh,Haghighi Meysam,Alirezaei Zahra,Jabbari Iraj,Chegeni Nahid,Elmtalab Soheil,Vega-Carrillo Hector ReneORCID,Kazemian Ali,Geraily GhazaleORCID,Karimi Amir HosseinORCID

Abstract

Neutron contamination in radiation therapy is of concern in treatment with high-energy photons (> 10 MV). With the development of new radiotherapy modalities such as spatially fractionated grid radiation therapy (SFGRT) or briefly grid radiotherapy, more studies are required to evaluate the risks associated with neutron contamination. In 15 MV SFGRT, high-Z materials such as lead and cerrobend are used as the block on the tray of linear accelerator (linac) which can probably increase the photoneutron production. On the other hand, the high-dose fractions (10–20 Gy) used in SFGRT can induce high neutron contamination. The current study was devoted to addressing these concerns via compression of neutron fluence (Φn) and ambient dose equivalent (Hn*(10)) at the patient table and inside the maze between SFGRT and conventional fractionated radiation therapy (CFRT). The main components of the 15 MV Siemens Primus equipped with different grids and located inside a typical radiotherapy bunker were simulated by the MCNPX® Monte Carlo code. Evidence showed that the material used for grid construction does not significantly increase neutron contamination inside the maze. However, at the end of the maze, neutron contamination in SFGRT is significantly higher than in CFRT. In this regard, a delay time of 15 minutes after SFGRT is recommended for all radiotherapy staff before entering the maze. It can be also concluded that Hn*(10) at the patient table is at least 10 times more pronounced than inside the maze. Therefore, the patient is more at risk of neutrons compared to the staff. The Hn*(10) at the isocenter in SFGRT with grids made of lead and cerrobend was nearly equal to CFRT. Nevertheless, it was dramatically lower than in CFRT by 30% if the brass grid is used. Accordingly, SFGRT with the brass grid is recommended, from radiation protection aspects.

Funder

Tehran University of Medical Sciences and Health Services

Publisher

Public Library of Science (PLoS)

Subject

Multidisciplinary

Reference32 articles.

1. Dose levels due to neutrons in the vicinity of high-energy medical accelerators.;PH McGinley;Med Phys [Internet],1976

2. Neutron dose equivalent and neutron spectra in tissue for clinical linacs operating at 15, 18 and 20 MV;SA Martinez-Ovalle;Radiat Prot Dosim,2011

3. Photoneutron contamination from an 18 MV Saturne medical linear accelerator in the treatment room;M Khosravi;Radiat Prot Dosim,2013

4. A Monte Carlo Study for Photoneutron Dose Estimations around the High-Energy Linacs.;N Mohammadi;J Biomed Phys Eng [Internet],2014

5. The effect of neutron contamination on probability of secondary cancer in radiotherapy of pelvic region with 18-MV photons;AH Karimi;J Isfahan Med Sch [Internet],2019

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