Microdistribution of internal radiation dose in biological tissues exposed to 56Mn dioxide microparticles

Author:

Stepanenko Valeriy1,Kaprin Andrey2,Ivanov Sergey1,Shegay Peter2,Bogacheva Viktoria1,Sato Hitoshi3,Shichijo Kazuko4,Toyoda Shin5,Kawano Noriyuki6,Ohtaki Megu7,Fujimoto Nariaki7,Endo Satoru8,Chaizhunusova Nailya9,Shabdarbaeva Dariya9,Zhumadilov Kassym10,Hoshi Masaharu7

Affiliation:

1. A. Tsyb Medical Radiological Research Center – Branch of the National Medical Research Radiological Center of the Ministry of Health of the Russian Federation , Koroleva Str., 4., Obninsk, Kaluga Region 2490036, Russian Federation

2. National Medical Research Radiological Center of the Ministry of Health of the Russian Federation , Koroleva Str., 4., Obninsk, Kaluga Region 2490036, Russian Federation

3. Ibaraki Prefectural University of Health Sciences , 4669-2, Ami-chyo Ami, Inashiki-gun, Ibaraki 300-0394, Japan

4. Atomic Bomb Disease Institute, Nagasaki University , 1-12-4, Sakamoto, Nagasaki 852-8523, Japan

5. Department of Applied Physics, Okayama University of Science , 1-1 Ridai, Kita-ku, Okayama 700-0005, Japan

6. The Center for Peace Hiroshima University , Higashisenda-machi 1-1-89, Naka-ku, Hiroshima 730-0053, Japan

7. Research Institute for Radiation Biology and Medicine Hiroshima University , 1-2-3, Kasumi, Minami-ku, Hiroshima 734-8551, Japan

8. Graduate School of Advanced Science and Engineering, Hiroshima University , 1-4-1, Kagamiyama, Higashi, Hiroshima 739-8527, Japan

9. Semey State Medical University , Abay Str., 103, Semey, 071400, Kazakhstan

10. Eurasian National University named after L.N. Gumilyov , Munaipasova Str. 13, Astana 010008, Kazakhstan

Abstract

Abstract Manganese-56 (56Mn) was one of the dominant neutron-activated radionuclides during the first hours following the atomic-bombing of Hiroshima and Nagasaki. The radiation spectrum of 56Mn and the radiation emission from excited levels of 56Fe following 56Mn beta-decay include gamma-quanta, beta-particles, Auger electrons and X-rays. The dispersion of neutron activated 56Mn in the air can lead to entering of radioactive microparticles into the lungs. The investigation of spatial microdistribution of an internal dose in biological tissue exposed to 56Mn is an important matter with regards to the possible elevated irradiation of the lung alveoli and alveolar ducts. The Monte Carlo code (MCNP-4C) was used for the calculation of absorbed doses in biological tissue around 56Mn dioxide microparticles. The estimated absorbed dose has a very essential gradient in the epithelium cells of lung alveoli and alveolar duct: from 61 mGy/decay on the surface of simple squamous cells of epithelium to 0.15 mGy/decay at distance of 0.3 μm, which is maximal cell thickness. It has been concluded that epithelial cells of these pulmonary microstructures are selectively irradiated by low-energy electrons: short-range component of beta-particles spectrum and Auger electrons. The data obtained are important for the interpretation of biological experiments implementing dispersed neutron-activated 56Mn dioxide powder.

Funder

Grants-in-Aid for Scientific Research

JSPS KAKENHI

Publisher

Oxford University Press (OUP)

Subject

Health, Toxicology and Mutagenesis,Radiology, Nuclear Medicine and imaging,Radiation

Reference18 articles.

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