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Toxicological Sciences : an Official Journal of the Society of Toxicology|April 4, 2000
Utility of real time breath analysis and physiologically based pharmacokinetic modeling to determine the percutaneous absorption of methyl chloroform in rats and humansT S Poet, K D Thrall, R A Corley, et al.
Journal of Aerosol Science|November 21, 2022
Influence of alveolar mixing and multiple breaths of aerosol intake on particle deposition in the human lungsB Asgharian, O Price, A A T Borojeni, et al.
Toxicological Sciences : an Official Journal of the Society of Toxicology|February 11, 2005
Derivation of a human equivalent concentration for n-butanol using a physiologically based pharmacokinetic model for n-butyl acetate and metabolites n-butanol and n-butyric acidJ G Teeguarden, P J Deisinger, T S Poet, et al.
Toxicology and Applied Pharmacology|September 15, 1990
Estimating the risk of liver cancer associated with human exposures to chloroform using physiologically based pharmacokinetic modelingR H Reitz, A L Mendrala, R A Corley, et al.
Toxicology and Applied Pharmacology|May 1, 1990
Development of a physiologically based pharmacokinetic model for chloroformR A Corley, A L Mendrala, F A Smith, et al.
International Journal of Occupational and Environmental Health|May 29, 2000
A real-time in-vivo method for studying the percutaneous absorption of volatile chemicalsK D Thrall, T S Poet, R A Corley, et al.
Toxicological Sciences : an Official Journal of the Society of Toxicology|June 28, 2000
Assessment of the percutaneous absorption of trichloroethylene in rats and humans using MS/MS real-time breath analysis and physiologically based pharmacokinetic modelingT S Poet, R A Corley, K D Thrall, et al.
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