Have a personal or library account? Click to login
Determination of radiation doses to the skin due to 238U and 232Th series for the therapeutic application in the Merzouga sand baths Cover

Determination of radiation doses to the skin due to 238U and 232Th series for the therapeutic application in the Merzouga sand baths

By: Rodouan Touti and  Hicham Harrass  
Open Access
|Jun 2020

References

  1. [1] Moore KL, Dalley AF. Anatomie médicale. De Boeck Supérieur. 2001. p. 12.
  2. [2] International Commission on Radiological Protection. Recommendations of the International Commission on Radiological Protection. ICRP Publication 60. 1990.
  3. [3] Eatough JP, Worley A, Moss GR. Personal monitoring of 218Po and 214Po radionuclide deposition onto individuals under normal environmental exposure conditions. Phys Med Biol. 1999:44(9):2227-2239.10.1088/0031-9155/44/9/310
  4. [4] Eatough, J. P. Alpha particle dosimetry for basal layer of the skin from the radon progeny 218Po and 214Po. Phys Med Biol. 1997;42(10):1899-1911.10.1088/0031-9155/42/10/004
  5. [5] Misdaq MA, Khajmi H, Aitnouh F, et al. W. A new method for evaluating uranium and thorium contents in different natural material samples by calculating the CR-39 and LR-115 type II SSNTD detection efficiencies for the emitted a-particles. Nucl Instrum Methods Phys Res B. 2000;171(3):350-359.10.1016/S0168-583X(00)00292-5
  6. [6] Touti R. Measurement of 238U, 232Th and 222Rn concentrations in different table oils samples. Determination of committed effective doses received by consumers following the ingestion of table oil. Polish J Med Phys End. 2019;25(4):201-209.10.2478/pjmpe-2019-0027
  7. [7] Misdaq MA, Ait Nouh F, Khajmi H, et al. A new method for evaluating radon and thoron alpha-activities per unit volume inside and outside various naturel material samples by calculating detection efficiencies of CR-39 and LR-115 II SSNTD for the emitted α-particles. Appl Radiat Isot. 2001;55(2):205-213.10.1016/S0969-8043(00)00381-X
  8. [8] Biersack JP, Ziegler JF. IBM research. TRIM. Version 98. 1998.
  9. [9] Misdaq MA, Bakhchi A, Ktata A, et al. Determination of uranium and thorium contents inside different materials using track detectors and mean critical angles. Appl Radiat Isot. 1999;51(2):209-215.10.1016/S0969-8043(98)00190-0
  10. [10] Ziegler JF, Biersack JP, Littmark U. The stopping and range of ions in solids. New York: Pergamon; 1985.10.1007/978-1-4615-8103-1_3
  11. [11] International Commission on Radiological Protection. Recommendations of the International Commission on Radiological Protection. ICRP Publication 103, Elsevier, 2007.
  12. [12] International Commission on Radiological Protection. Recommendations of the International Commission on Radiological Protection. ICRP Publication 116, Elsevier, 2010.
DOI: https://doi.org/10.2478/pjmpe-2020-0010 | Journal eISSN: 1898-0309 | Journal ISSN: 1425-4689
Language: English
Page range: 87 - 96
Submitted on: Aug 15, 2019
Accepted on: Mar 22, 2020
Published on: Jun 25, 2020
Published by: Polish Society of Medical Physics
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2020 Rodouan Touti, Hicham Harrass, published by Polish Society of Medical Physics
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.