Monte Carlo modelling of experimental setup used for biodosimetry intercomparison

Author:

Gunasekara Dinindu1ORCID,Wilkins Ruth1ORCID,Tessier Frédéric2,Beaton-Green Lindsay1

Affiliation:

1. Environmental and Radiation Health Sciences Directorate , Health Canada 775 Brookfield Rd, Ottawa K1A 1C1 , Canada

2. National Research Council Canada Ionizing Radiation Standards, 1200 Montréal Rd, Ottawa K1A 0R6, Canada

Abstract

Abstract When using biodosimetry techniques to assess absorbed dose from an ionising radiation exposure, a calibration curve is required. At Health Canada (HC), these curves are generated for a variety of radiation qualities and assays to translate biological damage into absorbed dose. They are produced by irradiating biological samples in custom-designed water-equivalent phantoms inside a cabinet X-ray machine. In the HC lab, two different phantoms can be used for irradiation that differs in material composition and internal geometry. To ensure consistency, the impact of using the phantoms interchangeably was investigated. This was done through lab measurements and the development of a Monte Carlo (MC) model. Differences up to 6.7% were found between the two experimental setups, indicating the need for careful consideration if using these setups interchangeably in the laboratory. Once validated, the MC model can be used to investigate different aspects of the experimental setup without the need for laboratory measurements.

Funder

Canadian Space Agency

Publisher

Oxford University Press (OUP)

Subject

Public Health, Environmental and Occupational Health,Radiology, Nuclear Medicine and imaging,General Medicine,Radiation,Radiological and Ultrasound Technology

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