Published 2015 | Version v1
Miscellaneous

Monte Carlo simulations for the purpose of efficiency curve calibration for the Fastscan whole body counter

Description

In order to be able to qualify and quantify radiation exposure in terms of dose, a Fastscan whole body counter must be calibrated correctly. Current calibration methods do not take the full range of body types into consideration when creating efficiency curve calibrations. The goal of this work is the creation of a Monte Carlo (MCNP) model, that allows the simulation of efficiency curves for a diverse population of subjects. Models were created for both the Darlington and the Pickering Fastscan WBCs, and the simulations were benchmarked against experimental results with good agreement. The Pickering Fastscan was found to have agreement to within ±9%, and the Darlington Fastscan had agreement to within ±11%. Further simulations were conducted to investigate the effects of increased body fat on the detected activity, as well as locating the position of external contamination using front/back ratios of activity. Simulations were also conducted to create efficiency calibrations that had good agreement with the manufacturer's efficiency curves. The work completed in this thesis can be used to create efficiency calibration curves for unique body compositions in the future. (author)

Availability note (English)

Available from https://central.bac-lac.gc.ca/.item?id=TC-OOSHDU-556&op=pdf&app=Library. Also available from ProQuest Dissertation Express, Ann Arbor, Michigan (United States), under document no. 1604987.

Additional details

Publishing Information

Imprint Pagination
132 p.

INIS

Country of Publication
Canada
Country of Input or Organization
Canada
INIS RN
51046114
Subject category
S61: RADIATION PROTECTION AND DOSIMETRY;
Resource subtype / Literary indicator
Thesis, Non-conventional Literature
Descriptors DEI
BODY; CALIBRATION; DARLINGTON SITE; MONTE CARLO METHOD; PICKERING SITE; RADIATION DOSES; SIMULATION; WHOLE-BODY COUNTERS
Descriptors DEC
CALCULATION METHODS; DOSES; MEASURING INSTRUMENTS; RADIATION DETECTORS; REACTOR SITES

Optional Information

Notes
41 refs., 15 tabs., 61 figs.