Literature DB >> 3189359

The use of geometric and arithmetic mean exposures in occupational epidemiology.

N S Seixas1, T G Robins, L H Moulton.   

Abstract

In constructing quantitative measures of exposure for the study of chronic occupational disease, researchers have generally used a cumulative exposure calculated as the sum of the products of period-specific exposure concentrations and the time each individual spent in each exposure category. There has been some disagreement and lack of clarity about the use of the geometric or arithmetic mean of exposure for this calculation. This paper explores the difference in the use of the two measures and defines a relative bias introduced with the geometric vs. the arithmetic mean. The magnitude of the bias is calculated in two linear models of possible exposure-response relationships. The theoretical basis for the choice of one mean over the other is then explored. It is suggested that when adopting a linear exposure response model, the arithmetic mean is the more appropriate measure. In other models, such as a linear-log (outcome is proportional to the logarithm of exposure) model, the geometric mean would be more appropriate.

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Year:  1988        PMID: 3189359     DOI: 10.1002/ajim.4700140410

Source DB:  PubMed          Journal:  Am J Ind Med        ISSN: 0271-3586            Impact factor:   2.214


  17 in total

1.  Statistical modeling of occupational chlorinated solvent exposures for case-control studies using a literature-based database.

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2.  The diesel exhaust in miners study: I. Overview of the exposure assessment process.

Authors:  Patricia A Stewart; Joseph B Coble; Roel Vermeulen; Patricia Schleiff; Aaron Blair; Jay Lubin; Michael Attfield; Debra T Silverman
Journal:  Ann Occup Hyg       Date:  2010-09-27

3.  Development of a job-exposure matrix for exposure to total and fine particulate matter in the aluminum industry.

Authors:  Elizabeth M Noth; Christine Dixon-Ernst; Sa Liu; Linda Cantley; Baylah Tessier-Sherman; Ellen A Eisen; Mark R Cullen; S Katharine Hammond
Journal:  J Expo Sci Environ Epidemiol       Date:  2013-09-11       Impact factor: 5.563

4.  Exposure to nitrous oxide in delivery suites at six Swedish hospitals.

Authors:  Håkan Westberg; Liselott Egelrud; Carl-Göran Ohlson; Mona Hygerth; Cecilia Lundholm
Journal:  Int Arch Occup Environ Health       Date:  2007-10-20       Impact factor: 3.015

Review 5.  Determinants of exposure to metalworking fluid aerosols: a literature review and analysis of reported measurements.

Authors:  Donguk Park; Patrica A Stewart; Joseph B Coble
Journal:  Ann Occup Hyg       Date:  2009-04

6.  Comparison of methods for analyzing left-censored occupational exposure data.

Authors:  Tran Huynh; Gurumurthy Ramachandran; Sudipto Banerjee; Joao Monteiro; Mark Stenzel; Dale P Sandler; Lawrence S Engel; Richard K Kwok; Aaron Blair; Patricia A Stewart
Journal:  Ann Occup Hyg       Date:  2014-09-26

7.  Development of a source-exposure matrix for occupational exposure assessment of electromagnetic fields in the INTEROCC study.

Authors:  Javier Vila; Joseph D Bowman; Jordi Figuerola; David Moriña; Laurel Kincl; Lesley Richardson; Elisabeth Cardis
Journal:  J Expo Sci Environ Epidemiol       Date:  2016-11-09       Impact factor: 5.563

8.  Personal exposure, behavior, and work site conditions as determinants of blood lead among bridge painters.

Authors:  Ema G Rodrigues; M Abbas Virji; Michael D McClean; Janice Weinberg; Susan Woskie; Lewis D Pepper
Journal:  J Occup Environ Hyg       Date:  2010-02       Impact factor: 2.155

9.  The health effects of swimming at Sydney beaches. The Sydney Beach Users Study Advisory Group.

Authors:  S J Corbett; G L Rubin; G K Curry; D G Kleinbaum
Journal:  Am J Public Health       Date:  1993-12       Impact factor: 9.308

10.  DTI BASED STRUCTURAL DAMAGE CHARACTERIZATION FOR DISORDERS OF CONSCIOUSNESS.

Authors:  F Gómez; A Soddu; Q Noirhomme; A Vanhaudenhuyse; L Tshibanda; N Leporé; S Laureys
Journal:  Proc Int Conf Image Proc       Date:  2013-02-21
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