Literature DB >> 18078484

Shared uncertainty in measurement error problems, with application to Nevada Test Site fallout data.

Yehua Li1, Annamaria Guolo, F Owen Hoffman, Raymond J Carroll.   

Abstract

In radiation epidemiology, it is often necessary to use mathematical models in the absence of direct measurements of individual doses. When complex models are used as surrogates for direct measurements to estimate individual doses that occurred almost 50 years ago, dose estimates will be associated with considerable error, this error being a mixture of (a) classical measurement error due to individual data such as diet histories and (b) Berkson measurement error associated with various aspects of the dosimetry system. In the Nevada Test Site(NTS) Thyroid Disease Study, the Berkson measurement errors are correlated within strata. This article concerns the development of statistical methods for inference about risk of radiation dose on thyroid disease, methods that account for the complex error structure inherence in the problem. Bayesian methods using Markov chain Monte Carlo and Monte-Carlo expectation-maximization methods are described, with both sharing a key Metropolis-Hastings step. Regression calibration is also considered, but we show that regression calibration does not use the correlation structure of the Berkson errors. Our methods are applied to the NTS Study, where we find a strong dose-response relationship between dose and thyroiditis. We conclude that full consideration of mixtures of Berkson and classical uncertainties in reconstructed individual doses are important for quantifying the dose response and its credibility/confidence interval. Using regression calibration and expectation values for individual doses can lead to a substantial underestimation of the excess relative risk per gray and its 95% confidence intervals.

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Year:  2007        PMID: 18078484     DOI: 10.1111/j.1541-0420.2007.00810.x

Source DB:  PubMed          Journal:  Biometrics        ISSN: 0006-341X            Impact factor:   2.571


  19 in total

1.  Impact of measurement error in radon exposure on the estimated excess relative risk of lung cancer death in a simulated study based on the French Uranium Miners' Cohort.

Authors:  Rodrigue S Allodji; Klervi Leuraud; Anne C M Thiébaut; Stéphane Henry; Dominique Laurier; Jacques Bénichou
Journal:  Radiat Environ Biophys       Date:  2012-02-07       Impact factor: 1.925

2.  Estimation via corrected scores in general semiparametric regression models with error-prone covariates.

Authors:  Arnab Maity; Tatiyana V Apanasovich
Journal:  Electron J Stat       Date:  2011       Impact factor: 1.125

3.  Spatial measurement error and correction by spatial SIMEX in linear regression models when using predicted air pollution exposures.

Authors:  Stacey E Alexeeff; Raymond J Carroll; Brent Coull
Journal:  Biostatistics       Date:  2015-11-29       Impact factor: 5.899

4.  Estimation of radiation risk in presence of classical additive and Berkson multiplicative errors in exposure doses.

Authors:  S V Masiuk; S V Shklyar; A G Kukush; R J Carroll; L N Kovgan; I A Likhtarov
Journal:  Biostatistics       Date:  2016-01-20       Impact factor: 5.899

5.  Exposure Measurement Error in Air Pollution Studies: The Impact of Shared, Multiplicative Measurement Error on Epidemiological Health Risk Estimates.

Authors:  Mariam S Girguis; Lianfa Li; Fred Lurmann; Jun Wu; Carrie Breton; Frank Gilliland; Daniel Stram; Rima Habre
Journal:  Air Qual Atmos Health       Date:  2020-05-15       Impact factor: 3.763

6.  Non-parametric regression estimation from data contaminated by a mixture of Berkson and classical errors.

Authors:  Raymond J Carroll; Aurore Delaigle; Peter Hall
Journal:  J R Stat Soc Series B Stat Methodol       Date:  2007-11-01       Impact factor: 4.488

7.  Methods for estimation of radiation risk in epidemiological studies accounting for classical and Berkson errors in doses.

Authors:  Alexander Kukush; Sergiy Shklyar; Sergii Masiuk; Illya Likhtarov; Lina Kovgan; Raymond J Carroll; Andre Bouville
Journal:  Int J Biostat       Date:  2011-02-16       Impact factor: 0.968

8.  Prevalence of hyperthyroidism after exposure during childhood or adolescence to radioiodines from the chornobyl nuclear accident: dose-response results from the Ukrainian-American Cohort Study.

Authors:  M Hatch; K Furukawa; A Brenner; V Olinjyk; E Ron; L Zablotska; G Terekhova; R McConnell; V Markov; V Shpak; E Ostroumova; A Bouville; M Tronko
Journal:  Radiat Res       Date:  2010-10-07       Impact factor: 2.841

9.  STRATOS guidance document on measurement error and misclassification of variables in observational epidemiology: Part 2-More complex methods of adjustment and advanced topics.

Authors:  Pamela A Shaw; Paul Gustafson; Raymond J Carroll; Veronika Deffner; Kevin W Dodd; Ruth H Keogh; Victor Kipnis; Janet A Tooze; Michael P Wallace; Helmut Küchenhoff; Laurence S Freedman
Journal:  Stat Med       Date:  2020-04-03       Impact factor: 2.373

10.  Multiple indicators, multiple causes measurement error models.

Authors:  Carmen D Tekwe; Randy L Carter; Harry M Cullings; Raymond J Carroll
Journal:  Stat Med       Date:  2014-06-25       Impact factor: 2.373

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