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Radiation Protection Dosimetry|February 23, 2012
A method for calculating Bayesian uncertainties on internal doses resulting from complex occupational exposuresM Puncher, A Birchall, R K BullRadiation Protection Dosimetry|January 18, 2006
Obtaining an unbiased estimate of intake in routine monitoring when the time of intake is unknownM Puncher, J W Marsh, A BirchallRadiation Protection Dosimetry|March 27, 2013
A Bayesian analysis of uncertainties on lung doses resulting from occupational exposures to uraniumM Puncher, A Birchall, R K BullRadiation Protection Dosimetry|November 6, 2013
An intake prior for the Bayesian analysis of plutonium and uranium exposures in an epidemiology studyM Puncher, A Birchall, R K BullRadiation Protection Dosimetry|April 30, 2016
THE MAYAK WORKER DOSIMETRY SYSTEM (MWDS 2013): A RE-ANALYSIS OF USTUR CASE 0269 TO DETERMINE WHETHER PLUTONIUM BINDS TO THE LUNGSM Puncher, A Birchall, S Y TolmachevRadiation Protection Dosimetry|November 16, 2007
Avoiding biased estimates of dose when nothing is known about the time of intakeA Birchall, M Puncher, J W MarshHealth Physics|August 13, 2008
Uncertainty analysis of doses from inhalation of depleted uraniumM Puncher, M R Bailey, J D HarrisonJournal of Radiological Protection : Official Journal of the Society for Radiological Protection|June 7, 2017
Assessing the reliability of dose coefficients for exposure to radioiodine by members of the public, accounting for dosimetric and risk model uncertaintiesM Puncher, W Zhang, J D Harrison, et al.Radiation Protection Dosimetry|December 1, 2006
Uncertainties in doses from intakes of radionuclides assessed from monitoring measurementsG Etherington, A Birchall, M Puncher, et al.Radiation Protection Dosimetry|July 17, 2016
The Mayak Worker Dosimetry System (MWDS-2013): Implementation of the Dose CalculationsА Zhdanov, V Vostrotin, А Efimov, et al.Pageof 4