Detailed Information

Cited 0 time in webofscience Cited 0 time in scopus
Metadata Downloads

Bias-corrected Hp(10)-to-Organ-Absorbed Dose Conversion Coefficients for the Epidemiological Study of Korean Radiation Workersopen access

Authors
Jeong, A.Kwon, T.-E.Lee, W.Park, S.
Issue Date
2022
Publisher
Korean Association for Radiation Protection
Keywords
Bias Quantification; Conversion Coefficient; Epidemiological Study; Monte Carlo Method; Organ-Absorbed Dose
Citation
Journal of Radiation Protection and Research, v.47, no.3, pp.158 - 166
Indexed
SCOPUS
KCI
Journal Title
Journal of Radiation Protection and Research
Volume
47
Number
3
Start Page
158
End Page
166
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/146981
DOI
10.14407/jrpr.2022.00052
ISSN
2508-1888
Abstract
Background: The effects of radiation on the health of radiation workers who are constantly susceptible to occupational exposure must be assessed based on an accurate and reliable reconstruction of organ-absorbed doses that can be calculated using personal dosimeter readings measured as Hp(10) and dose conversion coefficients. However, the data used in the dose reconstruction contain significant biases arising from the lack of reality and could result in an inaccurate measure of organ-absorbed doses. Therefore, this study quantified the biases involved in organ dose reconstruction and calculated the bias-corrected Hp(10)-to-organ-absorbed dose coefficients for the use in epidemiological studies of Korean radiation workers. Materials and Methods: Two major biases were considered: (a) the bias in Hp(10) arising from the difference between the dosimeter calibration geometry and the actual exposure geometry, and (b) the bias in air kerma-to-Hp(10) conversion coefficients resulting from geometric differences between the human body and slab phantom. The biases were quantified by implementing personal dosimeters on the slab and human phantoms coupled with a Monte Carlo method and considered to calculate the bias-corrected Hp(10)-to-organ-absorbed dose conversion coefficients. Results and Discussion: The bias in Hp(10) was significant for large incident angles and low energies (e.g. , 0.32 for right lateral at 218 keV), whereas the bias in dose coefficients was significant for the posteroanterior (PA) geometry only (e.g. , 0.79 at 218 keV). The bias-corrected Hp(10)-to-organ-absorbed dose conversion coefficients derived in this study were up to 3.09- fold greater than those from the International Commission on Radiological Protection publications without considering the biases. Conclusion: The obtained results will aid future studies in assessing the health effects of occupational exposure of Korean radiation workers. The bias-corrected dose coefficients of this study can be used to calculate organ doses for Korean radiation workers based on personal dose records. © 2022 The Korean Association for Radiation Protection.
Files in This Item
There are no files associated with this item.
Appears in
Collections
College of Health Sciences > School of Health and Environmental Science > 1. Journal Articles

qrcode

Items in ScholarWorks are protected by copyright, with all rights reserved, unless otherwise indicated.

Related Researcher

Researcher Lee, Won ho photo

Lee, Won ho
보건과학대학 (보건환경융합과학부)
Read more

Altmetrics

Total Views & Downloads

BROWSE