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Published byBlaise Harry Holland Modified over 8 years ago
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Case Study # 2 Problem Formulation Inter-individual variability in cancer assessment (evaluate default from Silver Book) Proposed Methods Critical review of method outlined in Silver Book Suggestions for Improvement Refinement/expansion of methodology Consider as case study? Yes (with additional refinement)
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Case Study # 7 Problem Formulation Preexisting disease and low dose linear non cancer response Proposed Methods Critical review of methodology provided in Silver Book Suggestions for Improvement Provide methodology for evaluating this question Consider as case study? No (not in its current form)
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Case Study # 10 Problem Formulation Uncertainty in dose-response assessment Proposed Methods Using sensitivity analyses, compare the uncertainty associated with the BBDR model for formaldehyde with default methods Suggestions for Improvement Could be combined with PBPK model for formaldehyde Consider as case study? Yes
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Case Study # 23 Problem Formulation Species differences in metabolism Proposed Methods Evaluate the differences in metabolism for 1,3- butadiene and the impact on disease outcomes Suggestions for Improvement Consider as case study? Yes
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Case Study # 23.2 Problem Formulation Using human data in cancer risk assessment Proposed Methods Epidemiological investigations of 1,3- butadiene and leukemia Suggestions for Improvement Use MOA to interpret the epidemiology data Consider as case study? Yes
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Case Study # 25 Problem Formulation Developing acute air screening levels Proposed Methods TCEQ approaches for developing effects screening levels (pentene as an example) Suggestions for Improvement Consider as case study? Yes
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Case Study # 6 Problem Formulation Developing screening levels for chemicals with minimal data using structure or class information Proposed Methods Proposes using a range of tools including QSAR Suggestions for Improvement There may be other relevant tools to consider Consider as case study? Yes
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Case Study # 1(b) Problem Formulation Use of chemical-specific data in lieu of defaults Proposed Methods Evaluate approach in Silver Book/EPA’s draft guidance with boron as an example Suggestions for Improvement Review guidance from other sources (e.g., IPCS) Evaluate the uncertainty associated with defaults Consider as case study? No (not in its current form)
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