Abstract
This study compares two North American time–activity data bases: the National Human Activity Pattern Survey (NHAPS) of 9386 interviewees in 1992–1994 in the continental USA with the Canadian Human Activity Pattern Survey (CHAPS) of 2381 interviewees in 1996–1997 in four major Canadian cities. Identical surveys and methodology were used to collect this data: random sample telephone selection within the identified telephone exchanges, computer-assisted telephone interviews, overselection of children and weekends in the 24-h recall diary and the same interviewers. Very similar response rates were obtained: 63% (NHAPS) and 64.5% (CHAPS). Results of comparisons by age within major activity and location groups suggest activity and location patterns are very similar (most differences being less than 1% or 14 min in a 24-h day) with the exception of seasonal differences. Canadians spend less time outdoors in winter and less time indoors in summer than their U.S. counterparts. When exposure assessments use time of year or outdoor/indoor exposure gradients, these differences may result in significant differences in exposure assessments. Otherwise, the 24-h time activity patterns of North Americans are remarkably similar and use of the combined data set for some exposure assessments may be feasible.
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References
Duan, N . Models for human exposure to air pollution, Environ Int (1982) 8: 305–309
Johnson, T, Capel, J, McCoy, M, Mozier, J . Estimation of ozone exposures experienced by outdoor workers in nine urban areas using a probabilistic version of NEM. Office of Air Quality Planning and Standards, U.S. Environmental Protection Agency, Research Triangle Park, North Carolina April, 1996
Johnson, T, McCoy, M, Capel, J, Wijnberg, L, Ollison, W . A comparison of ten time/activity databases. Effects of geographic location, temperature, demographic group and diary recall method. In: Vostal J.J. (Ed.)Tropospheric ozone: nonattainment and design value issues. Proceedings of an International Specialty Conference, Boston, October 27–30, 1992. Air and Waste Management Association, Pittsburg, PA 1993
Klepeis, NE, Nelson, WC, Ott, WR, Robinson, JP, Tsang, AM, Switzer, P, Behar, JV, Hern, SC, Engelmann, WH . The national human activity pattern survey (NHAPS): a resource for assessing exposure to environmental pollutants, J Exposure Anal Environ Epidemiol (2001) 11: 231–252
Leech, JA, Wilby, K, McMullen, E, Laporte, K . Canadian human time–activity pattern survey report of methods and population surveyed, Chron Dis Can (1996) 17: 118–123
Liu, LJS, Koutrakis, P, Leech, J, Broder, I . Assessment of ozone exposure in the Greater Metropolitan Area, J Air Waste Manage (1995) 45: 223–224
Nelson, WC, Ott, WR, Robinson, JP . The National Human Activity Pattern Survey (NHAPS): Use of Nationwide Activity Data for Human Exposure AssessmentEnvironmental Protection Agency/600/A-94/1471996
Sexton, K, Ryan, PB . Assessment of human exposure to air pollution: methods, measurements and models. In: Watson Ann Y., Bates Richard R., Kennedy Donald (Eds.)Air Pollution, the Automobile and Public Health. National Academy Press, New York 1998 207–238
Tsang, AM, Klepeis, NE . Descriptive statistics tables from a detailed analysis of the National Human Activity Pattern Survey (NHAPS) DataEnvironmental Protection Agency/600/R-96/1481996
Waksberg, J . Sampling methods for random digit dialing, J Am Stat Assoc (1978) 73: 40–46
Wiley, JA, Robinson, JP, Piazza, T, Garrett, K, Cirksena, K, Cheng, Y, Martin, G . Activity patterns of California residents. Final Report under Contract No A6-177-33. California Air Resources Board, Sacramento, CA 1991
Acknowledgements
The authors thank the U.S. Environmental Protection Agency and Dr. J.P. Robinson, one of the main architects of the survey, for graciously allowing us to use their methodology and the NHAPS data. The authors thank Johnny Blair and his team at the Maryland Survey Research Center, and Marc Smith-Doiron for his help with data analysis and presentation.
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This work was performed while Dr. Leech was under an Interchange Canada agreement between Health Canada and the University of Ottawa, Department of Medicine.
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LEECH, J., NELSON, W., BURNETT, R. et al. It's about time: A comparison of Canadian and American time–activity patterns. J Expo Sci Environ Epidemiol 12, 427–432 (2002). https://doi.org/10.1038/sj.jea.7500244
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DOI: https://doi.org/10.1038/sj.jea.7500244
Keywords
- exposure assessment
- time–activity pattern
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