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1.
Health Phys ; 108(3): 344-50, 2015 Mar.
Article in English | MEDLINE | ID: mdl-25627946

ABSTRACT

The earth is continually exposed to cosmic radiation of both solar and galactic origin. High-energy particles interact with the constituents in the atmosphere producing secondary particles that create radiation fields at aircraft altitudes. These secondary particles consist mainly of photons, protons, neutrons, charged and uncharged pions, and muons. The neutron component dominates the hadron cascade at lower altitudes as a result of its longer mean free path. Since air transportation has become more available to a greater number of people, this has led to an increase in the number of persons exposed to ionizing radiation of cosmic origin. This concerns pilots and cabin crews as well as frequent flyers. A neutron component of cosmic radiation was measured using an LR 115/CR-39 track detector associated with a 10B converter foil. The measurement of the neutron dose is a good approximation of the total dose since neutrons carry about 50% of the total ambient dose equivalent at aircraft altitudes. Also, the results of the measurements were compared with the data obtained by EPCARD software simulation. The measured neutron dose rate had a span from 0.36 to 8.83 µSv h(-1) (dose enhancement due to high solar activity in the flight period).


Subject(s)
Aircraft , Cosmic Radiation , Internationality , Neutrons , Radiation Monitoring
2.
Radiat Prot Dosimetry ; 162(1-2): 29-33, 2014 Nov.
Article in English | MEDLINE | ID: mdl-24993009

ABSTRACT

Long-term indoor radon measurements performed by LR 115 track etched detectors in Croatian homes during 2003-04 showed that the arithmetic means of radon concentrations in Lika-Senj and the southern part of Karlovac counties were three times higher (198 Bq m(-3)) than in houses at national level (68 Bq m(-3)). Recently, indoor radon measurements in randomly selected houses were investigated. The obtained values in these new measurements have confirmed the values obtained 10 y ago (the average radon value in 225 investigated houses in this area is 223 Bq m(-3)). Radon concentrations in soil gas were measured in September and October 2012 and 2013 with the AlphaGUARD measuring system. Areas with both elevated indoor radon levels and radon in soil gas were identified (some micro locations in Korenica, Licko Lesce, Generalski Stol, Slunj and Ogulin) and visually presented in the form of maps using the inverse distance weighting approach.


Subject(s)
Air Pollutants, Radioactive/analysis , Air Pollution, Indoor/analysis , Housing , Radiation Monitoring , Radon/analysis , Soil Pollutants/analysis , Croatia , Humans
3.
Radiol Oncol ; 44(1): 62-6, 2010 Mar.
Article in English | MEDLINE | ID: mdl-22933893

ABSTRACT

BACKGROUND: Electron linear accelerators in medical radiotherapy have replaced cobalt and caesium sources of radiation. However, medical accelerators with photon energies over 10 MeV generate undesired fast neutron contamination in a therapeutic X-ray photon beam. Photons with energies above 10 MeV can interact with the atomic nucleus of a high-Z material, of which the target and the head of an accelerator consist, and lead to the neutron ejection. RESULTS AND CONCLUSIONS: Our neutron dosimeter, composed of the LR-115 track etch detector and boron foil BN-1 converter, was calibrated on thermal neutrons generated in the nuclear reactor of the Josef Stefan Institute (Slovenia), and applied to dosimetry of undesirable neutrons in photon radiotherapy by the linear accelerator 15 MV Siemens Mevatron. Having considered a high dependence of a cross-section between neutron and boron on neutron energy, and broad neutron spectrum in a photon beam, as well as outside the entrance door to maze of the Mevatron, we developed a method for determining the effective neutron detector response. A neutron dose rate in the photon beam was measured to be 1.96 Sv/h. Outside the Mevatron room the neutron dose rate was 0.62 µSv/h. PACS: 87.52. Ga; 87.53.St; 29.40.Wk.

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