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International Archives of Occupational and Environmental Health|January 1, 1989
Occupational lead exposure and pituitary functionA Gustafson, P Hedner, A Schütz, et al.Journal of Internal Medicine|July 25, 2013
Atrial fibrillation prevalence revisitedL Friberg, L BergfeldtEnvironmental Health Perspectives|February 1, 1978
Late effects of air pollution with special reference to lung cancerL Friberg, R CederlöfPharmacology & Toxicology|January 1, 1995
Metabolism of mercury in hamster pups administered a single dose of 203Hg-labeled methyl mercuryL Dock, R L Rissanen, M VahterToxicology and Applied Pharmacology|October 1, 1996
A physiologically based pharmacokinetic model for arsenic exposure. II. Validation and application in humansS Mann, P O Droz, M VahterInternational Archives of Occupational and Environmental Health|January 1, 1992
Lead exposure in indoor firing rangesB G Svensson, A Schütz, A Nilsson, et al.Scandinavian Journal of Work, Environment & Health|June 1, 1987
Kinetics of lead in blood after the end of occupational exposureA Schütz, S Skerfving, J Ranstam, et al.Environmental Health Perspectives|August 31, 2000
Both the environment and genes are important for concentrations of cadmium and lead in bloodL Björkman, M Vahter, N L PedersenToxicology and Applied Pharmacology|March 1, 1996
A physiologically based pharmacokinetic model for arsenic exposure. I. Development in hamsters and rabbitsS Mann, P O Droz, M VahterToxicology|November 1, 1994
Demethylation and placental transfer of methyl mercury in the pregnant hamsterL Dock, R L Rissanen, M VahterPageof 35