Evaluation of wall correction factor of INER's air-kerma primary standard chamber and dose variation by source displacement for HDR 192Ir brachytherapy Journal Article


Authors: Lee, J. H.; Wang, J. N.; Huang, T. T.; Su, S. H.; Chang, B. J.; Su, C. H.; Hsu, S. M.
Editor: Chan, M. F.
Article Title: Evaluation of wall correction factor of INER's air-kerma primary standard chamber and dose variation by source displacement for HDR 192Ir brachytherapy
Abstract: The aim of the present study was to estimate the wall effect of the self-made spherical graphite-walled cavity chamber with the Monte Carlo method for establishing the air-kerma primary standard of high-dose-rate (HDR) 192Ir brachytherapy sources at the Institute of Nuclear Energy Research (INER, Taiwan). The Monte Carlo method established in this paper was also employed to respectively simulate wall correction factors of the 192Ir air-kerma standard chambers used at the National Institute of Standards and Technology (NIST, USA) and the National Physical Laboratory (NPL, UK) for comparisons and verification. The chamber wall correction calculation results will be incorporated into INER's HDR 192Ir primary standard in the future. For the brachytherapy treatment in the esophagus or in the bronchi, the position of the isotope may have displacement in the cavity. Thus the delivered dose would differ from the prescribed dose in the treatment plan. We also tried assessing dose distribution due to the position displacement of HDR 192Ir brachytherapy source in a phantom with a central cavity by the Monte Carlo method. The calculated results could offer a clinical reference for the brachytherapy within the human organs with cavity. © 2013 J. H. Lee et al.
Journal Title: Biomed Research International
Volume: 2013
ISSN: 2314-6133
Publisher: Hindawi Publishing Corporation  
Date Published: 2013-01-01
Start Page: 436979
Language: English
DOI: 10.1155/2013/436979
PROVIDER: scopus
PMCID: PMC3816024
PUBMED: 24222907
DOI/URL:
Notes: --- - "Export Date: 25 November 2013" - "Source: Scopus"
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  1. Maria F Chan
    190 Chan