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Reconstruction of long-lived radionuclide intakes for techa riverside residents: Strontium-90

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dc.contributor.author Tolstykh E.I. en
dc.contributor.author Degteva M.O. en
dc.contributor.author Peremyslova L.M. en
dc.contributor.author Shagina N.B. en
dc.contributor.author Shishkina E.A. en
dc.contributor.author Krivoshchapov V.A. en
dc.contributor.author Anspaugh L.R. en
dc.contributor.author Napier B.A. en
dc.date.accessioned 2018-10-15T11:18:31Z
dc.date.available 2018-10-15T11:18:31Z
dc.date.issued 2011
dc.identifier.issn 179078
dc.identifier.uri http://dspace.susu.ru/handle/0001.74/20127
dc.description.abstract Releases of radioactive materials from the Mayak Production Association in 1949-1956 resulted in contamination of the Techa River; a nuclide of major interest was 90Sr, which downstream residents consumed with water from the river and with milk contaminated by cows' consumption of river water and contaminated pasture. Over the years, several reconstructions of dose have been performed for the approximately 30,000 persons who make up the Extended Techa River Cohort. The purpose of the study described here was to derive a revised reference-90Sr-intake function for the members of this cohort. The revision was necessary because recently discovered data have provided a more accurate description of the time course of the releases, and more is now known about the importance of the pasture grass-cow-milk pathway for the members of this cohort. The fundamental basis for the derivation of the reference-90Sr-intake function remains the same: thousands of measurements of Sr content in bone with a special whole-body counter, thousands of measurements of beta-activity of front teeth with a special tooth-beta counter, and a variety of other measurements, including post mortem measurements of Sr in bone, measurements of 90Sr in cow's milk, and measurements of beta activity in human excreta. Results of the new analyses are that the major intake started in September 1950 and peaked somewhat later than originally postulated. However, the total intake for adult residents has not changed significantly. For children of some birth years, the intake and incorporation of Sr in bone tissue have changed substantially. Copyright © 2011 Health Physics Society. en]
dc.language.iso English
dc.relation.ispartof Health Physics en]
dc.subject strontium en]
dc.subject adolescent en]
dc.subject adult en]
dc.subject animal en]
dc.subject article en]
dc.subject body burden en]
dc.subject bone en]
dc.subject cattle en]
dc.subject chemistry en]
dc.subject child en]
dc.subject cohort analysis en]
dc.subject enamel en]
dc.subject human en]
dc.subject infant en]
dc.subject metabolism en]
dc.subject middle aged en]
dc.subject milk en]
dc.subject newborn en]
dc.subject preschool child en]
dc.subject radiation exposure en]
dc.subject radiation monitoring en]
dc.subject radioactive contamination en]
dc.subject river en]
dc.subject Russian Federation en]
dc.subject time en]
dc.subject water pollutant en]
dc.subject Adolescent en]
dc.subject Adult en]
dc.subject Animals en]
dc.subject Body Burden en]
dc.subject Bone and Bones en]
dc.subject Cattle en]
dc.subject Child en]
dc.subject Child, Preschool en]
dc.subject Cohort Studies en]
dc.subject Dental Enamel en]
dc.subject Food Contamination, Radioactive en]
dc.subject Humans en]
dc.subject Infant en]
dc.subject Infant, Newborn en]
dc.subject Middle Aged en]
dc.subject Milk en]
dc.subject Radiation Monitoring en]
dc.subject Rivers en]
dc.subject Russia en]
dc.subject Strontium Radioisotopes en]
dc.subject Time Factors en]
dc.subject Water Pollutants, Radioactive en]
dc.subject Young Adult en]
dc.title Reconstruction of long-lived radionuclide intakes for techa riverside residents: Strontium-90 en
dc.type Article en]
dc.identifier.doi 10.1097/HP.0b013e318206d0ff
dc.identifier.scopus https://www.scopus.com/inward/record.uri?eid=2-s2.0-79958726478&doi=10.1097%2fHP.0b013e318206d0ff&partnerID=40&md5=a5ff810513d628b74338468853125421


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