A Practical Guide to Dose-Response Analyses and Risk Assessment in Occupational Epidemiology
- 1 January 2004
- journal article
- review article
- Published by Wolters Kluwer Health in Epidemiology
- Vol. 15 (1) , 63-70
- https://doi.org/10.1097/01.ede.0000100287.45004.e7
Abstract
Dose-response modeling in occupational epidemiology is usually motivated by questions of causal inference (eg, is there a monotonic increase of risk with increasing exposure?) or risk assessment (eg, how much excess risk exists at any given level of exposure?). We focus on several approaches to dose-response in occupational cohort studies. Categorical analyses are useful for detecting the shape of dose-response. However, they depend on the number and location of cutpoints and result in step functions rather than smooth curves. Restricted cubic splines and penalized splines are useful parametric techniques that provide smooth curves. Although splines can complement categorical analyses, they do not provide interpretable parameters. The shapes of these curves will depend on the degree of "smoothing" chosen by the analyst. We recommend combining categorical analyses and some type of smoother, with the goal of developing a reasonably simple parametric model. A simple parametric model should serve as the goal of dose-response analyses because (1) most "true" exposure response curves in nature may be reasonably simple, (2) a simple parametric model is easily communicated and used by others, and (3) a simple parametric model is the best tool for risk assessors and regulators seeking to estimate individual excess risks per unit of exposure. We discuss these issues and others, including whether the best model is always the one that fits the best, reasons to prefer a linear model for risk in the low-exposure region when conducting risk assessment, and common methods of calculating excess lifetime risk at a given exposure from epidemiologic results (eg, from rate ratios). Points are illustrated using data from a study of dioxin and cancer.Keywords
This publication has 17 references indexed in Scilit:
- Attenuation of exposure-response curves in occupational cohort studies at high exposure levelsScandinavian Journal of Work, Environment & Health, 2003
- Ethylene oxide and breast cancer incidence in a cohort study of 7576 women (United States)Cancer Causes & Control, 2003
- Risk Assessment for 2,3,7,8-Tetrachlorodibenzo-p-Dioxin (TCDD) based on an Epidemiologic StudyAmerican Journal of Epidemiology, 2001
- Kidney Disease and Arthritis in a Cohort Study of Workers Exposed to SilicaEpidemiology, 2001
- Diesel exhaust and lung cancer in the trucking industry: Exposure-response analyses and risk assessmentAmerican Journal of Industrial Medicine, 1998
- Epidemiology and quantitative risk assessment: a bridge from science to policy.American Journal of Public Health, 1995
- Modeling epidemiologic studies of occupational cohorts for the quantitative assessment of carcinogenic hazardsAmerican Journal of Industrial Medicine, 1995
- A dose-response analysis and quantitative assessment of lung cancer risk and occupational cadmium exposureAnnals of Epidemiology, 1992
- Regression Models in Clinical Studies: Determining Relationships Between Predictors and ResponseJNCI Journal of the National Cancer Institute, 1988
- Quantitative Risk Assessment of Lung Cancer in U.S. Uranium MinersHealth Physics, 1987