
Estimation of absorbed doses from paediatric cone-beam CT scans: MOSFET measurements and Monte Carlo simulations.
The purpose of this study was to establish a dose estimation tool with Monte Carlo (MC) simulations. A 5-y-old paediatric anthropomorphic phantom was computed tomography (CT) scanned to create a voxelised phantom and used as an input for the abdominal cone-beam CT in a BEAMnrc/EGSnrc MC system. An X-ray tube model of the Varian On-Board Imager((R)) was built in the MC system. To validate the model, the absorbed doses at each organ location for standard-dose and low-dose modes were measured in the physical phantom with MOSFET detectors; effective doses were also calculated. In the results, the MC simulations were comparable to the MOSFET measurements. This voxelised phantom approach could produce a more accurate dose estimation than the stylised phantom method. This model can be easily applied to multi-detector CT dosimetry.
Duke Scholars
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Related Subject Headings
- Radiometry
- Radiation Dosage
- Phantoms, Imaging
- Nuclear Medicine & Medical Imaging
- Monte Carlo Method
- Humans
- Cone-Beam Computed Tomography
- Computer Simulation
- Child
- Body Burden
Citation

Published In
DOI
EISSN
Publication Date
Volume
Issue
Start / End Page
Location
Related Subject Headings
- Radiometry
- Radiation Dosage
- Phantoms, Imaging
- Nuclear Medicine & Medical Imaging
- Monte Carlo Method
- Humans
- Cone-Beam Computed Tomography
- Computer Simulation
- Child
- Body Burden