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A rapid, accurate image simulation strategy for mega-voltage cone-beam computed tomography.

Authors :
Shi, Mengying
Myronakis, Marios
Jacobson, Matthew
Lehmann, Mathias
Ferguson, Dianne
Baturin, Paul
Huber, Pascal
Fueglistaller, Rony
Harris, Thomas
Lozano, Ingrid Valencia
Williams, Christopher
Morf, Daniel
Berbeco, Ross I
Source :
Physics in Medicine & Biology. 7/7/2020, Vol. 65 Issue 13, p1-14. 14p.
Publication Year :
2020

Abstract

Intensive computation time is required to simulate images of electronic portal imaging device (EPID) using Monte Carlo (MC) technique, limiting the development of applications associated with EPID, such as mega-voltage cone-beam computed tomography (MV-CBCT). In this study, a fast, accurate simulation strategy for MV-CBCT utilizing the FastEPID technique has been developed and validated. During FastEPID simulation, photon detection was determined by pre-calculated photon energy deposition efficiency (η) and particle transport within the EPID was replaced with a pre-calculated optical photon spread function. This method is capable of reducing the time required for EPID image simulation by a factor of 90–140, without compromising image quality. MV-CBCT images reconstructed from the FastEPID simulated projections have been validated against measurement in terms of mean Hounsfield unit (HU), noise, and cupping artifact. These images were obtained with both a Catphan 604 phantom and an anthropomorphic pelvis phantom, under treatment beam energies of 2.5 MV, 6 MV, and 6 MV flattening filter free. The agreement between measurement and simulation was excellent in all cases. This novel strategy was capable of reducing the run time of a full scan simulation of MV-CBCT performed on a CPU cluster to a matter of hours, rather than weeks or months required by a conventional approach. Multiple applications associated with MV-CBCT (e.g. imager design optimization) are anticipated to gain from the implementation of this novel simulation strategy. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00319155
Volume :
65
Issue :
13
Database :
Academic Search Index
Journal :
Physics in Medicine & Biology
Publication Type :
Academic Journal
Accession number :
144774321
Full Text :
https://doi.org/10.1088/1361-6560/ab868a