TWO STUDIES OF THE METABOLIC BEHAVIOR OF IODINE-131 IN THE HUMAN BODY.
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The major lymphocyte subsets in the peripheral blood were assessed in 120 children 6-13 years old living on areas that received high levels of radioactivity as fallout after the Chernobyl nuclear power plant accident. Seventy-one of the children were suffering from recurrent respiratory disease (RRDC) and 49 were not (non-RRDC). As controls, a total of 87 RRDC and non-RRDC living on noncontaminated areas were evaluated. We did not find significant differences in major lymphocyte subsets between the values in non-RRDC living on radionuclide-contaminated areas and noncontaminated areas. However, RRDC living on radionuclide-contaminated areas had a significantly lower percentage of CD3+ T and CD3+CD4+ T-helper/ inducer cells compared to control RRDC. Furthermore, the decrease in percentage of CD3+CD4+ cells was more profound in RRDC living in radiation-contaminated settlements with an average summary dose (ASD) Cs-137(134) and Sr-90 for the population > 1.0 mSv than in RRDC living in contaminated settlements with an ASD Cs-137(134) and Sr-90 < 1.0 mSv. These data indicated that long-time exposure to small doses of radiation could affect the immune system in children living around Chernobyl.
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In case of an accident at a nuclear power plant with liberation of radioactive material into the atmosphere, knowledge about the behavior of plant species when in contact with radionuclides is indispensable for safety reasons. The leaf-fruit translocation is an important route through which agricultural products are contaminated by radionuclides. To quantify the leaf-fruit translocation factors for 137Cs and 90Sr in common beans (Phaseolus vulgaris) an experiment was carried out in a greenhouse with a randomized block design. 137Cs activity was determined by gamma-ray spectrometry, while chemical separation followed by beta counting of 90Y was used for 90Sr determination. The model applied for translocation indicated functional dependence between the moment of tracer application and the physiological development of the bean plant. Translocation factors obtained for 137Cs and 90Sr were 0.16 and less than 0.005, respectively.
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