Literature DB >> 16808606

Estimating historical radiation doses to a cohort of U.S. radiologic technologists.

Steven L Simon1, Robert M Weinstock, Michele Morin Doody, James Neton, Thurman Wenzl, Patricia Stewart, Aparna K Mohan, R Craig Yoder, Michael Hauptmann, D Michal Freedman, John Cardarelli, H Amy Feng, André Bouville, Martha Linet.   

Abstract

Data have been collected and physical and statistical models have been constructed to estimate unknown occupational radiation doses among 90,000 members of the U.S. Radiologic Technologists cohort who responded to a baseline questionnaire during the mid-1980s. Since the availability of radiation dose data differed by calendar period, different models were developed and applied for years worked before 1960, 1960- 1976 and 1977-1984. The dose estimation used available film-badge measurements (approximately 350,000) for individual cohort members, information provided by the technologists on their work history and protection practices, and measurement and other data derived from the literature. The dosimetry model estimates annual and cumulative occupational badge doses (personal dose equivalent) for each technologist for each year worked from 1916 through 1984 as well as absorbed doses to organs and tissues including bone marrow, female breast, thyroid, ovary, testes, lung and skin. Assumptions have been made about critical variables including average energy of X rays, use of protective aprons, position of film badges, and minimum detectable doses. Uncertainty of badge and organ doses was characterized for each year of each technologist's working career. Monte Carlo methods were used to generate estimates of cumulative organ doses for preliminary cancer risk analyses. The models and predictions presented here, while continuing to be modified and improved, represent one of the most comprehensive dose reconstructions undertaken to date for a large cohort of medical radiation workers.

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Year:  2006        PMID: 16808606     DOI: 10.1667/RR3433.1

Source DB:  PubMed          Journal:  Radiat Res        ISSN: 0033-7587            Impact factor:   2.841


  40 in total

1.  Radiation organ doses received in a nationwide cohort of U.S. radiologic technologists: methods and findings.

Authors:  Steven L Simon; Dale L Preston; Martha S Linet; Jeremy S Miller; Alice J Sigurdson; Bruce H Alexander; Deukwoo Kwon; R Craig Yoder; Parveen Bhatti; Mark P Little; Preetha Rajaraman; Dunstana Melo; Vladimir Drozdovitch; Robert M Weinstock; Michele M Doody
Journal:  Radiat Res       Date:  2014-10-31       Impact factor: 2.841

Review 2.  Cancer risks associated with external radiation from diagnostic imaging procedures.

Authors:  Martha S Linet; Thomas L Slovis; Donald L Miller; Ruth Kleinerman; Choonsik Lee; Preetha Rajaraman; Amy Berrington de Gonzalez
Journal:  CA Cancer J Clin       Date:  2012-02-03       Impact factor: 508.702

Review 3.  Occupational radiation doses to operators performing fluoroscopically-guided procedures.

Authors:  Kwang Pyo Kim; Donald L Miller; Amy Berrington de Gonzalez; Stephen Balter; Ruth A Kleinerman; Evgenia Ostroumova; Steven L Simon; Martha S Linet
Journal:  Health Phys       Date:  2012-07       Impact factor: 1.316

4.  Common genetic variants related to genomic integrity and risk of papillary thyroid cancer.

Authors:  Gila Neta; Alina V Brenner; Erich M Sturgis; Ruth M Pfeiffer; Amy A Hutchinson; Briseis Aschebrook-Kilfoy; Meredith Yeager; Li Xu; William Wheeler; Michael Abend; Elaine Ron; Margaret A Tucker; Stephen J Chanock; Alice J Sigurdson
Journal:  Carcinogenesis       Date:  2011-06-03       Impact factor: 4.944

5.  Basal cell carcinoma and anthropometric factors in the U.S. radiologic technologists cohort study.

Authors:  Meg R Gerstenblith; Preetha Rajaraman; Elizabeth Khaykin; Michele M Doody; Bruce H Alexander; Martha S Linet; D Michal Freedman
Journal:  Int J Cancer       Date:  2012-01-31       Impact factor: 7.396

6.  Increased frequency of chromosome translocations associated with diagnostic x-ray examinations.

Authors:  Parveen Bhatti; Michele M Doody; Dale L Preston; Diane Kampa; Elaine Ron; Robert W Weinstock; Steven Simon; Alan A Edwards; Alice J Sigurdson
Journal:  Radiat Res       Date:  2008-08       Impact factor: 2.841

7.  Risk of cataract after exposure to low doses of ionizing radiation: a 20-year prospective cohort study among US radiologic technologists.

Authors:  Gabriel Chodick; Nural Bekiroglu; Michael Hauptmann; Bruce H Alexander; D Michal Freedman; Michele Morin Doody; Li C Cheung; Steven L Simon; Robert M Weinstock; André Bouville; Alice J Sigurdson
Journal:  Am J Epidemiol       Date:  2008-07-29       Impact factor: 4.897

8.  Association of chromosome translocation rate with low dose occupational radiation exposures in U.S. radiologic technologists.

Authors:  Mark P Little; Deukwoo Kwon; Kazataka Doi; Steven L Simon; Dale L Preston; Michele M Doody; Terrence Lee; Jeremy S Miller; Diane M Kampa; Parveen Bhatti; James D Tucker; Martha S Linet; Alice J Sigurdson
Journal:  Radiat Res       Date:  2014-06-16       Impact factor: 2.841

9.  A prospective study of medical diagnostic radiography and risk of thyroid cancer.

Authors:  Gila Neta; Preetha Rajaraman; Amy Berrington de Gonzalez; Michele M Doody; Bruce H Alexander; Dale Preston; Steven L Simon; Dunstana Melo; Jeremy Miller; D Michal Freedman; Martha S Linet; Alice J Sigurdson
Journal:  Am J Epidemiol       Date:  2013-03-25       Impact factor: 4.897

10.  Polymorphisms in estrogen biosynthesis and metabolism-related genes, ionizing radiation exposure, and risk of breast cancer among US radiologic technologists.

Authors:  Alice J Sigurdson; Parveen Bhatti; Shih-Chen Chang; Preetha Rajaraman; Michele M Doody; Laura Bowen; Steven L Simon; Robert M Weinstock; Martha S Linet; Marvin Rosenstein; Marilyn Stovall; Bruce H Alexander; Dale L Preston; Jeffery P Struewing
Journal:  Breast Cancer Res Treat       Date:  2009-02-12       Impact factor: 4.872

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