Literature DB >> 16522942

Risk analysis of leukaemia incidence among people living along the Techa River: a nested case-control study.

E Ostroumova1, B Gagnière, D Laurier, N Gudkova, L Krestinina, P Verger, P Hubert, D Bard, A Akleyev, M Tirmarche, M Kossenko.   

Abstract

Large quantities of radioactive materials released over time from the Mayak nuclear weapons facility caused significant internal and external exposure for people living along the banks of the Techa River (Southern Urals, Russia). We conducted a nested case-control study in the Extended Techa River Cohort to determine whether the risk of leukaemia incidence increased with protracted exposure to ionising radiation or with other non-radiation risk factors. The study included 83 cases identified over 47 years of follow-up and 415 controls matched for sex, age at diagnosis, age (within a 5 year age group), and date of initial residence in the riverside area. External and internal doses have been calculated using the Techa River Dosimetry System 1996 (TRDS96). Conditional logistic regression was used to calculate odds ratios per Gray (OR/Gy) and 95% confidence intervals (95% CI). After excluding cases of chronic lymphoid leukaemia, the OR/Gy of total, external, and internal doses were 4.6 (95% CI: 1.7-12.3), 7.2 (95%CI: 1.7-30.0) and 5.4 (95%CI: 1.1-27.2), respectively. A history of solid tumour, either malignant or benign, before the leukaemia diagnosis was associated with a 2.5-fold increase in the leukaemia risk (95% CI: 1.1-5.9). Even though the analysis of confounders was less useful than expected because of missing data, multivariate analyses that took the exposure dose into account confirmed the association between leukaemia incidence and tumour history.

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Year:  2006        PMID: 16522942     DOI: 10.1088/0952-4746/26/1/001

Source DB:  PubMed          Journal:  J Radiol Prot        ISSN: 0952-4746            Impact factor:   1.394


  8 in total

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2.  Perspective on the use of LNT for radiation protection and risk assessment by the U.S. Environmental Protection Agency.

Authors:  Jerome S Puskin
Journal:  Dose Response       Date:  2009-08-21       Impact factor: 2.658

3.  Temporal trends in childhood leukaemia incidence following exposure to radioactive fallout from atmospheric nuclear weapons testing.

Authors:  Richard Wakeford; Sarah C Darby; Michael F G Murphy
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4.  Leukemia incidence among people exposed to chronic radiation from the contaminated Techa River, 1953-2005.

Authors:  Lyudmila Krestinina; Dale L Preston; Faith G Davis; Svetlana Epifanova; Evgenia Ostroumova; Elaine Ron; Alexander Akleyev
Journal:  Radiat Environ Biophys       Date:  2009-12-12       Impact factor: 1.925

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Authors:  Ethel S Gilbert
Journal:  Int J Radiat Biol       Date:  2009-06       Impact factor: 2.694

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Authors:  Ausrele Kesminiene; Anne-Sophie Evrard; Viktor K Ivanov; Irina V Malakhova; Juozas Kurtinaitis; Aivars Stengrevics; Mare Tekkel; Lynn R Anspaugh; André Bouville; Sergei Chekin; Vadim V Chumak; Vladimir Drozdovitch; Vladimir Gapanovich; Ivan Golovanov; Phillipe Hubert; Sergei V Illichev; Svetlana E Khait; Viktor P Kryuchkov; Evaldas Maceika; Marat Maksyoutov; Anatoly K Mirkhaidarov; Semion Polyakov; Natalia Shchukina; Vanessa Tenet; Tatyana I Tserakhovich; Aleksandr Tsykalo; Aleksandr R Tukov; Elisabeth Cardis
Journal:  Radiat Res       Date:  2008-12       Impact factor: 2.841

7.  Leukaemia incidence in the Techa River Cohort: 1953-2007.

Authors:  L Y Krestinina; F G Davis; S Schonfeld; D L Preston; M Degteva; S Epifanova; A V Akleyev
Journal:  Br J Cancer       Date:  2013-10-15       Impact factor: 7.640

8.  Cancer and non-cancer mortality among French uranium cycle workers: the TRACY cohort.

Authors:  Eric Samson; Irwin Piot; Sergey Zhivin; David B Richardson; Pierre Laroche; Ana-Paula Serond; Dominique Laurier; Olivier Laurent
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  8 in total

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