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Issues in Risk Assessment (1993)

Chapter: Appendix B Organizing Subcommittee

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Suggested Citation:"Appendix B Organizing Subcommittee ." National Research Council. 1993. Issues in Risk Assessment. Washington, DC: The National Academies Press. doi: 10.17226/2078.
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Appendix B
Organizing Subcommittee

Kenny S. Cromp (Chairman)

Clement Associates, Inc.

Ruston, LA

Paul T. Bailey

Mobil Oil Corporation

Princeton, NJ

Michael A. Gallo

Robert Wood Johnson Medical School

University of Medicine and Dentistry of New Jersey

Piscataway, NJ

Richard A. Griesemer

National Institute of Environmental Health Sciences

National Toxicology Program

Research Triangle Park, NC

Dale Hattis

Clark University

Worcester, MA

Rogene Henderson

Lovelace Biomedical and Environmental Research Institute

Albuquerque, NM

Daniel Krewski

Health and Welfare Canada

Ottawa, Ontario

Canada

Donald R. Mattison

University of Pittsburgh

Graduate School of Public Health

Pittsburgh, PA

Ian Nisbet

I.C.T. Nisbet & Company, Inc.

Lincoln, MA

Richard H. Reitz

The Dow Chemical Company

Midland, MI

Suggested Citation:"Appendix B Organizing Subcommittee ." National Research Council. 1993. Issues in Risk Assessment. Washington, DC: The National Academies Press. doi: 10.17226/2078.
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Suggested Citation:"Appendix B Organizing Subcommittee ." National Research Council. 1993. Issues in Risk Assessment. Washington, DC: The National Academies Press. doi: 10.17226/2078.
×
Page 91
Suggested Citation:"Appendix B Organizing Subcommittee ." National Research Council. 1993. Issues in Risk Assessment. Washington, DC: The National Academies Press. doi: 10.17226/2078.
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Page 92
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The scientific basis, inference assumptions, regulatory uses, and research needs in risk assessment are considered in this two-part volume.

The first part, Use of Maximum Tolerated Dose in Animal Bioassays for Carcinogenicity, focuses on whether the maximum tolerated dose should continue to be used in carcinogenesis bioassays. The committee considers several options for modifying current bioassay procedures.

The second part, Two-Stage Models of Carcinogenesis, stems from efforts to identify improved means of cancer risk assessment that have resulted in the development of a mathematical dose-response model based on a paradigm for the biologic phenomena thought to be associated with carcinogenesis.

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