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Air Kerma to H-P(3) Conversion Coefficients for Exposure of the Human Eye Lens to the Selected Standard X-Ray Beam Qualities

Air kerma to HP(3) conversion coefficients for exp osure of the human eye lens to the selected standard X-RAY beam qualities

Thumbnail
2015
RAD2015_Krstic_AirKermaToH-P3.pdf (2.678Mb)
Аутори
Krstić, Dragana Ž.
Jovanović, Zoran M.
Nikezić, Dragoslav
Ciraj-Bjelac, Olivera
Конференцијски прилог (Објављена верзија)
Метаподаци
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Апстракт
International Commission on Radiological Protection (ICRP) has decreased the annual dose limit for the eye lens from 150 mSv down to 20 mSv for occupational exposures. The operational quantity Hp (3) has been defined for eye lens dosimetry, while cylindrical phantom approximating the shape of a head was suggested for calibration purposes. The aim of the work was to provide a set of conversion coefficients that could contribute to improving the overall quality of eye lens dose assessment. The work investigated the air kerma to Hp(3,iota)conversion coefficients, Hp(3,iota)/Ka (in Sv/Gy), based on Monte Carlo simulations for a standard beam qualities, different angulations and suitable cylindrical phantom. For incident angles iota from 0(o\) to 90(o)., the conversion coefficients Hp(3,iota)/Ka were in the range 0.44-0.88 for N-40, 0.72-1.06 for N-60, 0.91-1.63 for N-80, 1.08-1.52 for N-100, 1.22- 1.62 for N-120 and 0.14-1.56 for N-150 beam quality. The conversion factors Hp(3)/Ka provided... in this work are related to standard beam qualities readily available in the calibration laboratories and are suitable for application in numerous workplace situations in medicine and industry.

Кључне речи:
eye lens / medium energy X-Rays / MCNP5/X / conversion coefficients
Извор:
RAD Conference Proceedings, 2015, 231-234
Финансирање / пројекти:
  • Експериментална и теоријска истраживања у радијационој физици и радиоекологији (RS-171021)
  • Заједничка истраживања мерења и утицаја јонизујућег и УВ зрачења у области медицине и заштите животне средине (RS-43011)
Напомена:
  • 3rd International Conference on Radiation and Applications in Various Fields of Research (RAD), Jun 08-12, 2015, Budva, Montenegro

WoS: 000387979700049

Scopus: 2-s2.0-85057736970
[ Google Scholar ]
URI
https://vinar.vin.bg.ac.rs/handle/123456789/7126
Колекције
  • WoS Import
Институција/група
Vinča
TY  - CONF
AU  - Krstić, Dragana Ž.
AU  - Jovanović, Zoran M.
AU  - Nikezić, Dragoslav
AU  - Ciraj-Bjelac, Olivera
PY  - 2015
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/7126
AB  - International Commission on Radiological Protection (ICRP) has decreased the annual dose limit for the eye lens from 150 mSv down to 20 mSv for occupational exposures. The operational quantity Hp (3) has been defined for eye lens dosimetry, while cylindrical phantom approximating the shape of a head was suggested for calibration purposes. The aim of the work was to provide a set of conversion coefficients that could contribute to improving the overall quality of eye lens dose assessment. The work investigated the air kerma to Hp(3,iota)conversion coefficients, Hp(3,iota)/Ka (in Sv/Gy), based on Monte Carlo simulations for a standard beam qualities, different angulations and suitable cylindrical phantom. For incident angles iota from 0(o\) to 90(o)., the conversion coefficients Hp(3,iota)/Ka were in the range 0.44-0.88 for N-40, 0.72-1.06 for N-60, 0.91-1.63 for N-80, 1.08-1.52 for N-100, 1.22- 1.62 for N-120 and 0.14-1.56 for N-150 beam quality. The conversion factors Hp(3)/Ka provided in this work are related to standard beam qualities readily available in the calibration laboratories and are suitable for application in numerous workplace situations in medicine and industry.
C3  - RAD Conference Proceedings
T1  - Air Kerma to H-P(3) Conversion Coefficients for Exposure of the Human Eye Lens to the Selected Standard X-Ray Beam Qualities
SP  - 231
EP  - 234
ER  - 
@conference{
author = "Krstić, Dragana Ž. and Jovanović, Zoran M. and Nikezić, Dragoslav and Ciraj-Bjelac, Olivera",
year = "2015",
abstract = "International Commission on Radiological Protection (ICRP) has decreased the annual dose limit for the eye lens from 150 mSv down to 20 mSv for occupational exposures. The operational quantity Hp (3) has been defined for eye lens dosimetry, while cylindrical phantom approximating the shape of a head was suggested for calibration purposes. The aim of the work was to provide a set of conversion coefficients that could contribute to improving the overall quality of eye lens dose assessment. The work investigated the air kerma to Hp(3,iota)conversion coefficients, Hp(3,iota)/Ka (in Sv/Gy), based on Monte Carlo simulations for a standard beam qualities, different angulations and suitable cylindrical phantom. For incident angles iota from 0(o\) to 90(o)., the conversion coefficients Hp(3,iota)/Ka were in the range 0.44-0.88 for N-40, 0.72-1.06 for N-60, 0.91-1.63 for N-80, 1.08-1.52 for N-100, 1.22- 1.62 for N-120 and 0.14-1.56 for N-150 beam quality. The conversion factors Hp(3)/Ka provided in this work are related to standard beam qualities readily available in the calibration laboratories and are suitable for application in numerous workplace situations in medicine and industry.",
journal = "RAD Conference Proceedings",
title = "Air Kerma to H-P(3) Conversion Coefficients for Exposure of the Human Eye Lens to the Selected Standard X-Ray Beam Qualities",
pages = "231-234"
}
Krstić, D. Ž., Jovanović, Z. M., Nikezić, D.,& Ciraj-Bjelac, O.. (2015). Air Kerma to H-P(3) Conversion Coefficients for Exposure of the Human Eye Lens to the Selected Standard X-Ray Beam Qualities. in RAD Conference Proceedings, 231-234.
Krstić DŽ, Jovanović ZM, Nikezić D, Ciraj-Bjelac O. Air Kerma to H-P(3) Conversion Coefficients for Exposure of the Human Eye Lens to the Selected Standard X-Ray Beam Qualities. in RAD Conference Proceedings. 2015;:231-234..
Krstić, Dragana Ž., Jovanović, Zoran M., Nikezić, Dragoslav, Ciraj-Bjelac, Olivera, "Air Kerma to H-P(3) Conversion Coefficients for Exposure of the Human Eye Lens to the Selected Standard X-Ray Beam Qualities" in RAD Conference Proceedings (2015):231-234.

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