Bayesian dose–response analysis for epidemiological studies with complex uncertainty in dose estimation
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F. O. Hoffman | Steven L Simon | Deukwoo Kwon | F Owen Hoffman | Brian E Moroz | D. Kwon | S. Simon | B. Moroz
[1] Bradley P. Carlin,et al. Bayesian measures of model complexity and fit , 2002 .
[2] D. Pierce,et al. Allowance for Random Dose Estimation Errors in Atomic Bomb Survivor Studies: A Revision , 2008, Radiation research.
[3] F. O. Hoffman,et al. Thyroid Disease Associated With Exposure to the Nevada Nuclear Weapons Test Site Radiation: A Reevaluation Based on Corrected Dosimetry and Examination Data , 2006, Epidemiology.
[4] R. Carroll,et al. Stochastic Approximation in Monte Carlo Computation , 2007 .
[5] G. Byrnes,et al. Risk of Thyroid Cancer among Chernobyl Liquidators , 2012, Radiation research.
[6] Elisabeth Cardis,et al. A Monte Carlo Maximum Likelihood Method for Estimating Uncertainty Arising from Shared Errors in Exposures in Epidemiological Studies of Nuclear Workers , 2007, Radiation research.
[7] A. Sigurdson,et al. Association of Chromosome Translocation Rate with Low Dose Occupational Radiation Exposures in U.S. Radiologic Technologists , 2014, Radiation research.
[8] J. Lubin,et al. Adjusting Lung Cancer Risks for Temporal and Spatial Variations in Radon Concentration in Dwellings in Gansu Province, China , 2005, Radiation research.
[9] M. Hoshi,et al. Retrospective dose assessment for the population living in areas of local fallout from the Semipalatinsk nuclear test site Part I: External exposure. , 2006, Journal of radiation research.
[10] T Fearn,et al. Measurement error in the explanatory variable of a binary regression: regression calibration and integrated conditional likelihood in studies of residential radon and lung cancer. , 2008, Statistics in medicine.
[11] F. O. Hoffman,et al. Accounting for Shared and Unshared Dosimetric Uncertainties in the Dose Response for Ultrasound-Detected Thyroid Nodules after Exposure to Radioactive Fallout , 2015, Radiation research.
[12] F. O. Hoffman,et al. Shared Uncertainty in Measurement Error Problems, with Application to Nevada Test Site Fallout Data , 2007, Biometrics.
[13] K. Kopecky,et al. Childhood Thyroid Cancer, Radiation Dose from Chernobyl, and Dose Uncertainties in Bryansk Oblast, Russia: A Population-Based Case-Control Study , 2006, Radiation research.
[14] Martyn Plummer,et al. JAGS: A program for analysis of Bayesian graphical models using Gibbs sampling , 2003 .
[15] D. Stram,et al. Shared Dosimetry Error in Epidemiological Dose-Response Analyses , 2015, PloS one.
[16] Adrian E. Raftery,et al. Bayesian Model Averaging: A Tutorial , 2016 .
[17] F. O. Hoffman,et al. THE HANFORD THYROID DISEASE STUDY: AN ALTERNATIVE VIEW OF THE FINDINGS , 2007, Health physics.
[18] D. English,et al. A review of the effects of random measurement error on relative risk estimates in epidemiological studies. , 1989, International journal of epidemiology.
[19] C. Land,et al. Ultrasound-Detected Thyroid Nodule Prevalence and Radiation Dose from Fallout , 2008, Radiation research.
[20] R. Doll,et al. Residential radon and lung cancer--detailed results of a collaborative analysis of individual data on 7148 persons with lung cancer and 14,208 persons without lung cancer from 13 epidemiologic studies in Europe. , 2006, Scandinavian journal of work, environment & health.
[21] Raymond J Carroll,et al. A Reanalysis of Thyroid Neoplasms in the Israeli Tinea Capitis Study Accounting for Dose Uncertainties , 2004, Radiation research.
[22] D. Stram,et al. Correcting for exposure measurement error in a reanalysis of lung cancer mortality for the Colorado Plateau Uranium Miners cohort. , 1999, Health physics.
[23] Ethel S Gilbert,et al. Some Statistical Implications of Dose Uncertainty in Radiation Dose–Response Analyses , 2006, Radiation research.
[24] Andrew W. Roddam,et al. Measurement Error in Nonlinear Models: a Modern Perspective , 2008 .
[25] B G Armstrong,et al. Effect of measurement error on epidemiological studies of environmental and occupational exposures. , 1998, Occupational and environmental medicine.
[26] K. Kopecky,et al. ESTIMATION OF THYROID RADIATION DOSES FOR THE HANFORD THYROID DISEASE STUDY: RESULTS AND IMPLICATIONS FOR STATISTICAL POWER OF THE EPIDEMIOLOGICAL ANALYSES , 2004, Health physics.
[27] F. O. Hoffman,et al. The Two-Dimensional Monte Carlo: A New Methodologic Paradigm for Dose Reconstruction for Epidemiological Studies , 2015, Radiation research.
[28] M. Hoshi,et al. Retrospective dose assessment for the population living in areas of local fallout from the Semipalatinsk Nuclear Test Site Part II: Internal exposure to thyroid. , 2006, Journal of radiation research.
[29] C. Land,et al. External dose estimates for Dolon village: application of the U.S./Russian joint methodology. , 2006, Journal of radiation research.
[30] O. Axelson,et al. Residential radon and lung cancer in Sweden: risk analysis accounting for random error in the exposure assessment. , 1997, Health physics.
[31] Adrian E. Raftery,et al. Bayesian model averaging: a tutorial (with comments by M. Clyde, David Draper and E. I. George, and a rejoinder by the authors , 1999 .
[32] F. O. Hoffman,et al. Semiparametric Regression Modeling with Mixtures of Berkson and Classical Error, with Application to Fallout from the Nevada Test Site , 2002, Biometrics.