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Microbial Risk Analysis|October 26, 2020
A Data Simulation Method to Optimize a Mechanistic Dose-Response Model for Viral Loads of Hepatitis AMark H WeirMicroorganisms|January 21, 2022
Knowledge to Predict Pathogens: <i>Legionella pneumophila</i> Lifecycle Systematic Review Part II Growth within and Egress from a Host CellAlexis L Mraz, Mark H WeirEnvironmental Science & Technology|June 15, 2011
A model for in-vivo delivered dose estimation for inhaled bacillus anthracis spores in humans with interspecies extrapolationMark H Weir, Charles N HaasRisk Analysis : an Official Publication of the Society for Risk Analysis|March 27, 2015
Development of an Interspecies Nested Dose-Response Model for Mycobacterium avium subspecies paratuberculosisKirk J Breuninger, Mark H WeirJournal of Water and Health|February 14, 2019
Development of a dose-response model for Naegleria fowleriKara Dean, Mark H Weir, Jade MitchellWater Research|January 27, 2023
Fluence-based QMRA model for bacterial photorepair and regrowth in drinking water after decentralized UV disinfectionDaniel Ma, Mark H Weir, Natalie M HullRisk Analysis : an Official Publication of the Society for Risk Analysis|June 17, 2008
Dose-response models for inhalation of Bacillus anthracis spores: interspecies comparisonsTimothy A Bartrand, Mark H Weir, Charles N HaasWater Research|January 5, 2021
Development of methods to estimate microcystins removal and water treatment resiliency using mechanistic risk modellingMark H Weir, Traven A Wood, Amy Zimmer-FaustWater Research|December 5, 2016
Dose response models and a quantitative microbial risk assessment framework for the Mycobacterium avium complex that account for recent developments in molecular biology, taxonomy, and epidemiologyKerry A Hamilton, Mark H Weir, Charles N HaasThe Science of the Total Environment|March 14, 2017
A discussion about public health, lead and Legionella pneumophila in drinking water supplies in the United StatesMichael B Rosen, Lok R Pokhrel, Mark H WeirPageof 4