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Radiat. Environ. Biophys., 49, (4), 509-530
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Yankovich T.L., Beresford N.A., Wood M., Aono T., Andersson P., Barnett C.L., Bennett P., Brown J., Fesenko S.,Hosseini A., Howard B.J, Johansen M, Phaneuf M., Tagami K., Takata H., Twining J., Uchida S.
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Whole-body to tissue concentration ratios for use in biota dose assessments for animals.
Radiat. Environ. Biophys., 49, (4), 549-565
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Fesenko S., Fesenko E., Titov I., Karpenko E., Sanzharova N., Gondin Fonseca A., Brown J.
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Radionuclide transfer to marine biota species: review of Russian language studies.
Radiat. Environ. Biophys., 49, (4), 531-547
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Tagami K., Uchida S.
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Can elemental composition data of crop leaves be used to estimate radionuclide transfer to tree leaves?
Radiat. Environ. Biophys., 49, (4), 583-590
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Takata H., Aono T., Tagami K., Uchida S.
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Concentration ratios of stable elements for selected biota in Japanese estuarine areas.
Radiat. Environ. Biophys., 49, (4), 591-601
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Johansen M.P., Twining J.R.
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Radionuclide concentration ratios in Australian terrestrial wildlife and livestock: data compilation and analysis.
Radiat. Environ. Biophys., 49, (4), 603-611
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Willey N.J.
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Phylogeny can be used to make useful predictions of soil-to-plant transfer factors for radionuclides.
Radiat. Environ. Biophys., 49, (4), 613-623
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Dragović S., Janković Mandić L.
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Transfer of radionuclides to ants, mosses and lichens in semi-natural ecosystems.
Radiat. Environ. Biophys., 49, (4), 625-634
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Higley K.A.
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Estimating transfer parameters in the absence of data.
Radiat. Environ. Biophys., 49, (4), 645-656
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