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Evaluation of biologically based dose-response modeling for developmental toxicity: a workshop report.
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Applications of mechanistic data in risk assessment: the past, present, and future.
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Biologically based risk assessment models for developmental toxicity.
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Beyond the cancer slope factor: Broad application of Bayesian and probabilistic approaches for cancer dose-response assessment.
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Cancer Risk Assessment and the Biostatistical Revolution of the 1970s-A Reflection.
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Source reconstruction of airborne toxics based on acute health effects information.
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Quantitative Adverse Outcome Pathways and Their Application to Predictive Toxicology.
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In silico toxicology: computational methods for the prediction of chemical toxicity.
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Systems Biology and Biomarkers of Early Effects for Occupational Exposure Limit Setting.
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Approaches to integrated monitoring for environmental health impact assessment.
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Addressing human variability in next-generation human health risk assessments of environmental chemicals.
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2
Formaldehyde risk assessment.
Ann Occup Hyg. 2009 Mar;53(2):181-4; author reply 184-9. doi: 10.1093/annhyg/men084. Epub 2009 Jan 27.
3
Commentary on "Toxicity testing in the 21st century: implications for human health risk assessment" by Krewski et al.
Risk Anal. 2009 Apr;29(4):480-1; discussion 492-7. doi: 10.1111/j.1539-6924.2008.01165.x. Epub 2008 Dec 9.
4
How can biologically-based modeling of arsenic kinetics and dynamics inform the risk assessment process? - A workshop review.
Toxicol Appl Pharmacol. 2008 Nov 1;232(3):359-68. doi: 10.1016/j.taap.2008.06.023. Epub 2008 Jul 15.
5
Heterogeneity in multistage carcinogenesis and mixture modeling.
Theor Biol Med Model. 2008 Jul 21;5:13. doi: 10.1186/1742-4682-5-13.
6
Sensitivity analysis of biologically motivated model for formaldehyde-induced respiratory cancer in humans.
Ann Occup Hyg. 2008 Aug;52(6):481-95. doi: 10.1093/annhyg/men038. Epub 2008 Jul 14.
7
Toxicology. Transforming environmental health protection.
Science. 2008 Feb 15;319(5865):906-7. doi: 10.1126/science.1154619.
9
Science and trans-science.
Science. 1972 Jul 21;177(4045):211. doi: 10.1126/science.177.4045.211.

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