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V Drozdovitch

Showing results (11-20 of 28) with videos related to

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Radiation Protection Dosimetry|January 19, 2007
Radiation exposure to the population of Europe following the Chernobyl accidentV Drozdovitch, A Bouville, N Chobanova, et al.
Journal of Developmental Origins of Health and Disease|November 29, 2013
The utility of focus group interviews to capture dietary consumption data in the distant past: dairy consumption in Kazakhstan villages 50 years agoM Schwerin, S Schonfeld, V Drozdovitch, et al.
Health Physics|October 19, 2011
Estimation of the thyroid doses for ukrainian children exposed in utero after the chernobyl accidentI Likhtarov, L Kovgan, M Chepurny, et al.
Health Physics|June 16, 2006
Measurement of 129 I and 137 Cs in soils from Belarus and reconstruction of 131I deposition from the Chernobyl accidentT Straume, L R Anspaugh, A A Marchetti, et al.
Journal of Radiological Protection : Official Journal of the Society for Radiological Protection|October 5, 2023
Further development and application of a method for assessing radionuclide surface activity distribution and source location based on measurements of ambient dose equivalent rate. Examples for Andreeva Bay, Chernobyl NPP and IstiklolK Chizhov, Yu Bragin, M K Sneve, et al.
Journal of Radiological Protection : Official Journal of the Society for Radiological Protection|October 5, 2023
Further development and application of a method for assessing radionuclide surface activity distribution and source location based on measurements of ambient dose equivalent rateK Chizhov, Yu Bragin, M K Sneve, et al.
Health Physics|March 16, 2006
Individual thyroid dose estimates for a case-control study of chernobyl-related thyroid cancer among children of Belarus--part II. Contributions from long-lived radionuclides and external radiationVictor F Minenko, Alexander V Ulanovsky, Vladimir V Drozdovitch, et al.
British Journal of Cancer|July 29, 1999
Childhood exposure due to the Chernobyl accident and thyroid cancer risk in contaminated areas of Belarus and RussiaP Jacob, Y Kenigsberg, I Zvonova, et al.
British Journal of Cancer|September 3, 2010
Thyroid cancer following nuclear tests in French PolynesiaF de Vathaire, V Drozdovitch, P Brindel, et al.
Cancer Epidemiology, Biomarkers & Prevention : a Publication of the American Association for Cancer Research, Cosponsored by the American Society of Preventive Oncology|June 16, 2026
Radiation risk of screening-detected diffuse goiter in a Belarusian cohort exposed as children or adolescents to iodine-131 after ChernobylLydia B Zablotska, Robert J McConnell, Aleksandr V Rozhko, et al.
Pageof 3

Showing results (11-20 of 28) with videos related to

Sort By:
Pageof 3
Radiation Protection Dosimetry|January 19, 2007
Radiation exposure to the population of Europe following the Chernobyl accidentV Drozdovitch, A Bouville, N Chobanova, et al.
Journal of Developmental Origins of Health and Disease|November 29, 2013
The utility of focus group interviews to capture dietary consumption data in the distant past: dairy consumption in Kazakhstan villages 50 years agoM Schwerin, S Schonfeld, V Drozdovitch, et al.
Health Physics|October 19, 2011
Estimation of the thyroid doses for ukrainian children exposed in utero after the chernobyl accidentI Likhtarov, L Kovgan, M Chepurny, et al.
Health Physics|June 16, 2006
Measurement of 129 I and 137 Cs in soils from Belarus and reconstruction of 131I deposition from the Chernobyl accidentT Straume, L R Anspaugh, A A Marchetti, et al.
Journal of Radiological Protection : Official Journal of the Society for Radiological Protection|October 5, 2023
Further development and application of a method for assessing radionuclide surface activity distribution and source location based on measurements of ambient dose equivalent rate. Examples for Andreeva Bay, Chernobyl NPP and IstiklolK Chizhov, Yu Bragin, M K Sneve, et al.
Journal of Radiological Protection : Official Journal of the Society for Radiological Protection|October 5, 2023
Further development and application of a method for assessing radionuclide surface activity distribution and source location based on measurements of ambient dose equivalent rateK Chizhov, Yu Bragin, M K Sneve, et al.
Health Physics|March 16, 2006
Individual thyroid dose estimates for a case-control study of chernobyl-related thyroid cancer among children of Belarus--part II. Contributions from long-lived radionuclides and external radiationVictor F Minenko, Alexander V Ulanovsky, Vladimir V Drozdovitch, et al.
British Journal of Cancer|July 29, 1999
Childhood exposure due to the Chernobyl accident and thyroid cancer risk in contaminated areas of Belarus and RussiaP Jacob, Y Kenigsberg, I Zvonova, et al.
British Journal of Cancer|September 3, 2010
Thyroid cancer following nuclear tests in French PolynesiaF de Vathaire, V Drozdovitch, P Brindel, et al.
Cancer Epidemiology, Biomarkers & Prevention : a Publication of the American Association for Cancer Research, Cosponsored by the American Society of Preventive Oncology|June 16, 2026
Radiation risk of screening-detected diffuse goiter in a Belarusian cohort exposed as children or adolescents to iodine-131 after ChernobylLydia B Zablotska, Robert J McConnell, Aleksandr V Rozhko, et al.
Pageof 3