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Records 1 to 12 of 12 records from [ORD-NHEERL] published between 12/13/2013 and 12/13/2018 from author David Thomas

2018
El-Masri, H., T. Hong, C. Henning, W. Mendez, E. Hudgens, D. Thomas, AND JaniceS Lee. Evaluation of a Physiologically based Pharmacokinetic (PBPK) Model for Inorganic Arsenic Exposure Using Data from Two Diverse Human Populations. ENVIRONMENTAL HEALTH PERSPECTIVES. National Institute of Environmental Health Sciences (NIEHS), Research Triangle Park, NC, 126(7):1-18, (2018). https://doi.org/10.1289/EHP3096
Elek, B., J. Misenheimer, C. Nelson, K. Bradham, AND D. Thomas. Remediation of lead (Pb)-contaminated soil affects relative bioavailability (RBA) of Pb in adult female mice. Society of Toxicology, San Antonio, TX, March 11 - 15, 2018.
2017
Elek, B., P. Alava, J. Misenheimer, C. Nelson, K. Bradham, AND D. Thomas. Evaluation of lead and phosphate interactions in a mouse model for oral bioavailability of lead. Society of Toxicology Annual Meeting, Baltimore, Maryland, March 12 - 16, 2017.
2016
Hudgens, E., Z. Drobna, B. He, X. Le, M. Styblo, J. Rogers, AND D. Thomas. Effects of biological and behavioral factors on urinary arsenic metabolic profiles in a U.S. population. ENVIRONMENTAL HEALTH. Academic Press Incorporated, Orlando, FL, 15(1):62, (2016).
Thomas, D., P. Alava, K. Bradham, C. Nelson, AND J. Misenheimer. Estimating Lead (Pb) Bioavailability In A Mouse Model. Society of Toxicology Annual Meeting, New Orleans, LA, March 13 - 17, 2016.
Bradham, K., C. Nelson, P. Alava, J. Misenheimer, G. Diamond, W. Thayer, AND D. Thomas. Estimating relative bioavailability of soil lead in the mouse. JOURNAL OF TOXICOLOGY AND ENVIRONMENTAL HEALTH - PART A: CURRENT ISSUES. Taylor & Francis, Inc., Philadelphia, PA, 79(24):1179-1182, (2016). https://doi.org/10.1080/15287394.2016.1221789
Thomas, D. AND K. Bradham. Role of complex organic arsenicals in food in aggregate exposure to arsenic. Journal of Environmental Sciences. Elsevier BV, AMSTERDAM, Netherlands, 49:86-96, (2016).
2015
Thomas, D. The Chemistry and Metabolism of Arsenic. Edition 1, Chapter 4, J. Christopher States (ed.), Arsenic: Exposure Sources, Health Risks, and Mechanisms of Toxicity. John Wiley & Sons Incorporated, New York, NY, 1:149-202, (2015).
Wang, Q., D. Thomas, AND H. Naranmandura. The importance of being thiomethylated: formation, fate, and effects of methylated thioarsenicals. CHEMICAL RESEARCH IN TOXICOLOGY. American Chemical Society, Washington, DC, , 281-289, (2015).
2014
Thomas, D., E. Hudgens, AND J. Rogers. Biological and behavioral modifiers of urinary arsenic metabolic profiles in a U.S. population. Presented at Society of Toxicology, Phoenix, AZ, March 23 - 27, 2014.
Thomas, D., M. Kohan, J. Naratilova, Z. Drobna, M. Styblo, K. Bradham, P. Alava, AND J. Creed. Monomethylioarsenicals are substratres for human arsenic (+3 oxidation state) methyltransferase. Presented at Society of Toxicology, Phoenix, AZ, March 23 - 27, 2014.
2013
Thomas, D. The die is cast - Arsenic exposure in early life and disease susceptibility. CHEMICAL RESEARCH IN TOXICOLOGY. American Chemical Society, Washington, DC, 26(12):1778-81, (2013).