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Shiftwork and health

from Psychology, health and illness

Published online by Cambridge University Press:  18 December 2014

Katharine R. Parkes
Affiliation:
University of Oxford
Susan Ayers
Affiliation:
University of Sussex
Andrew Baum
Affiliation:
University of Pittsburgh
Chris McManus
Affiliation:
St Mary's Hospital Medical School
Stanton Newman
Affiliation:
University College and Middlesex School of Medicine
Kenneth Wallston
Affiliation:
Vanderbilt University School of Nursing
John Weinman
Affiliation:
United Medical and Dental Schools of Guy's and St Thomas's
Robert West
Affiliation:
St George's Hospital Medical School, University of London
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Summary

Current trends in shiftwork

Industrial and commercial activities that operate outside normal work hours have become widespread in recent years; services such as banking, communications, transport, catering and retailing are routinely available during evening hours, and often round-the-clock. Consequently, the work patterns of a substantial proportion of the population now extend beyond regular daytime working hours; variable schedules (often including evening or night work) and rotating shifts are both widespread. In a recent European survey, 28% of the workforce had variable work patterns, 10% had evening or night schedules, while 17% worked two-shift or three-shift rotating schedules (Boisard et al., 2003). Further analyses showed that the proportion of shift workers remained relatively constant up to age 45 years, but fell sharply at higher ages, particularly over 55 years (European Foundation for the Improvement of Living and Working Conditions, 2003), reflecting older workers' difficulties in adjusting to shiftwork.

Similarly, analyses of US survey data showed that, in 1997, 27.6% of the workforce had flexible work schedules, while 16.8% of full-time employees had ‘alternative’ schedules involving work outside normal daytime hours (06.00–18.00 hrs), 6.4% of whom worked night or rotating shifts (Beers, 2000). These proportions varied by occupation; rotating shifts were particularly common in security services (16.3%), mining (12.5%) and catering (8.7%), but infrequent among professionals and managers (1.7%). Night work was prevalent in healthcare, manufacturing and manual occupations.

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Publisher: Cambridge University Press
Print publication year: 2007

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References

Akerstedt, T. (1990). Psychological and psychophysiological effects of shift work. Scandinavian Journal of Work, Environment and Health, 16(Suppl. 1), 67–73.CrossRefGoogle Scholar
Akerstedt, T. (1998). Shift work and disturbed sleep/wakefulness. Sleep Medicine Reviews, 2, 117–28.CrossRefGoogle Scholar
Akerstedt, T. (2003). Shift work and disturbed sleep/wakefulness. Occupational Medicine, 53, 89–94.CrossRefGoogle Scholar
Beers, T. M. (2000). Flexible schedules and shift work: replacing the ‘9–5’ workday. Monthly Labor Review, June, 33–40.Google Scholar
Bjorvatn, B., Kecklund, G. & Akerstedt, T. (1999). Bright light treatment used for adaptation to night work and re-adaptation back to day life. A field study at an oil platform in the North Sea. Journal of Sleep Research, 8, 105–12.CrossRefGoogle Scholar
Boggild, H. & Knutsson, A. (1999). Shift work, risk factors and cardiovascular disease. Scandinavian Journal of Work, Environment & Health, 25, 85–99.CrossRefGoogle Scholar
Boisard, P., Cartron, D., Gollac, M. & Valeyre, A. (2003). Time and work: duration of work. Dublin, Ireland: European Foundation for the Improvement of Living and Working Conditions.
Bovbjerg, D. H. (2003). Circadian disruption and cancer: sleep and immune regulation. Brain, Behavior, and Immunity, 17(Suppl. 1), S48–50.CrossRefGoogle Scholar
Caruso, C. C., Lusk, S. L. & Gillespie, B. W. (2004). Relationship of work schedules to gastrointestinal diagnoses, symptoms, and medication use in auto factory workers. American Journal of Industrial Medicine, 46, 586–98.Google Scholar
Costa, G. (1996). The impact of shift and night work on health. Applied Ergonomics, 27, 9–16.Google Scholar
Costa, G. (2001). The 24-hour society: between myth and reality. Journal of Human Ergology, 30, 15–20.Google Scholar
Costa, G. (2003). Shift work and occupational medicine: an overview. Occupational Medicine, 53, 83–8.CrossRefGoogle Scholar
Costa, G., Sartori, S., Facco, P. & Apostoli, P. (2001). Health conditions of bus drivers in a 6 year follow up study. Journal of Human Ergology, 30, 405–10.Google Scholar
, European Foundation for the Improvement of Living and Working Conditions (2003). Age and working conditions in the European Union. Dublin, Ireland: Author.
Folkard, S. & Tucker, P. (2003). Shift work, safety and productivity. Occupational Medicine, 53, 95–101.CrossRefGoogle Scholar
Gordon, N. P., Cleary, P. D., Parker, C. E. & Czeisler, C. A. (1986). The prevalence and health impact of shiftwork. American Journal of Public Health, 76, 1225–8.Google Scholar
Hanecke, K., Tiedemann, S., Nachreiner, F. & Grzech-Sukalo, H. (1998). Accident risk as a function of hour at work and time of day as determined from accident data and exposure models for the German working population. Scandinavian Journal of Work, Environment & Health, 24(Suppl. 3), 43–8.Google Scholar
Hansen, J. (2001). Increased breast cancer risk among women who work predominantly at night. Epidemiology, 12, 74–7.CrossRefGoogle Scholar
Harma, M., Sallinen, M., Ranta, R., Mutanen, P. & Muller, K. (2002). The effect of an irregular shift system on sleepiness at work in train drivers and railway traffic controllers. Journal of Sleep Research, 11, 141–51.CrossRefGoogle Scholar
Hatch, M. C., Figa Talamanca, I. & Salerno, S. (1999). Work stress and menstrual patterns among American and Italian nurses. Scandinavian Journal of Work, Environment and Health, 25, 144–50.Google Scholar
Jamal, M. (2004). Burnout, stress and health of employees on non-standard work schedules: a study of Canadian workers. Stress and Health, 20, 113–19.CrossRefGoogle Scholar
Jansen, N. W., Kant, I., Nijhuis, F. J., Swaen, G. M. & Kristensen, T. S. (2004). Impact of worktime arrangements on work-home interference among Dutch employees. Scandinavian Journal of Work, Environment and Health, 30, 139–48.CrossRefGoogle Scholar
Kawachi, I., Colditz, G. A., Stampfer, M. J.et al. (1995). Prospective study of shift work and risk of coronary heart disease in women. Circulation, 92, 3178–82.CrossRefGoogle Scholar
Knauth, P. & Hornberger, S. (2003). Preventive and compensatory measures for shift workers. Occupational Medicine, 53, 109–16.CrossRefGoogle Scholar
Knutsson, A. (1989). Shift work and coronary heart disease. Scandinavian Journal of Social Medicine. Supplementum, 44, 1–36.Google Scholar
Knutsson, A. (2003). Health disorders of shift workers. Occupational Medicine, 53, 103–8.CrossRefGoogle Scholar
Knutsson, A., Akerstedt, T., Jonsson, B. G. & Orth Gomer, K. (1986). Increased risk of ischaemic heart disease in shift workers. Lancet, 2, 89–92.CrossRefGoogle Scholar
Knutsson, A. & Boggild, H. (2000). Shiftwork and cardiovascular disease: review of disease mechanisms. Reviews on Environmental Health, 15, 359–72.CrossRefGoogle Scholar
Labyak, S., Lava, S., Turek, F. & Zee, P. (2002). Effects of shiftwork on sleep and menstrual function in nurses. Health Care for Women International, 23, 703–14.CrossRefGoogle Scholar
Lac, G. & Chamoux, A. (2004). Biological and psychological responses to two rapid shiftwork schedules. Ergonomics, 47, 1339–49.CrossRefGoogle Scholar
Laundry, B. R. & Lees, R. E. (1991). Industrial accident experience of one company on 8- and 12-hour shift systems. Journal of Occupational Medicine, 33, 903–6.Google Scholar
Meijman, T., Van-Der-Meer, O. & Van-Dormolen, M. (1993). The after-effects of night work on short-term memory performance. Ergonomics, 36, 37–42.CrossRefGoogle Scholar
Morikawa, Y., Nakagawa, H., Miura, K.et al. (1999). Relationship between shift work and onset of hypertension in a cohort of manual workers. Scandinavian Journal of Work, Environment & Health, 25, 100–4.CrossRefGoogle Scholar
Mozurkewich, E. L., Luke, B., Avni, M. & Wolf, F. M. (2000). Working conditions and adverse pregnancy outcome: a meta-analysis. Obstetrics and Gynecology, 95, 623–35.CrossRefGoogle Scholar
Ohayon, M. M., Lemoine, P., Arnaud Briant, V. & Dreyfus, M. (2002). Prevalence and consequences of sleep disorders in a shift worker population. Journal of Psychosomatic Research, 53, 577–83.CrossRefGoogle Scholar
Parkes, K. R. (1999). Shiftwork, job type, and the work environment as joint predictors of health outcomes. Journal of Occupational Health Psychology, 4, 256–68.CrossRefGoogle Scholar
Parkes, K. R. (2002). Shift work and age as interactive predictors of body mass index among offshore workers. Scandinavian Journal of Work, Environment & Health, 28, 64–71.CrossRefGoogle Scholar
Pisarski, A., Bohle, P. & Callan, V. J. (2002). Extended shifts in ambulance work: influences on health. Stress and Health, 18, 119–26.CrossRefGoogle Scholar
Rajaratnam, S. M. & Arendt, J. (2001). Health in a 24-h society. Lancet, 358, 999–1005.Google Scholar
Schernhammer, E. S., Laden, F., Speizer, F. E.et al. (2001). Rotating night shifts and risk of breast cancer in women participating in the nurses' health study. Journal of the National Cancer Institute, 93, 1563–8.CrossRefGoogle Scholar
Schernhammer, E. S., Laden, F., Speizer, F. E.et al. (2003). Night-shift work and risk of colorectal cancer in the nurses' health study. Journal of the National Cancer Institute, 95, 825–8.CrossRefGoogle Scholar
Schernhammer, E. S. & Schulmeister, K. (2004). Melatonin and cancer risk: does light at night compromise physiologic cancer protection by lowering serum melatonin levels?British Journal of Cancer, 90, 941–3.Google Scholar
Scott, A. J. (2000). Shift work and health. Primary Care, 27, 1057–70.Google Scholar
Segawa, K., Nakazawa, S., Tsukamoto, Y.et al. (1987). Peptic ulcer is prevalent among shift workers. Digestive Diseases and Sciences, 32, 449–53.CrossRefGoogle Scholar
Smith, C. S., Folkard, S. & Fuller, J. A. (2003). Shiftwork and working hours. In Quick, J. C. (Ed.). Handbook of occupational health psychology. Washington, DC: American Psychological Association.
Smith, C. S., Robie, C., Folkard, S.et al. (1999). A process model of shiftwork and health. Journal of Occupational Health Psychology, 4, 207–18.CrossRefGoogle Scholar
Smith, L., Folkard, S. & Poole, C. J. (1994). Increased injuries on night shift. Lancet, 344, 1137–9.Google Scholar
Tankova, I., Adan, A. & Buela-Casal, G. (1994). Circadian typology and individual differences: a review. Personality and Individual Differences, 16, 671–84.CrossRefGoogle Scholar
Taylor, P. J. & Pocock, S. J. (1972). Mortality of shift and day workers, 1956–68. British Journal of Industrial Medicine, 29, 201–7.CrossRefGoogle Scholar
Tenkanen, L., Sjoblom, T. & Harma, M. (1998). Joint effect of shift work and adverse life-style factors on the risk of coronary heart disease. Scandinavian Journal of Work, Environment and Health, 24, 351–7.CrossRefGoogle Scholar
Tenkanen, L., Sjoblom, T., Kalimo, R., Alikoski, T. & Harma, M. (1997). Shift work, occupation and coronary heart disease over 6 years of follow-up in the Helsinki Heart Study. Scandinavian Journal of Work, Environment and Health, 23, 257–65.Google Scholar
Tynes, T., Hannevik, M., Andersen, A., Vistnes, A. I. & Haldorsen, T. (1996). Incidence of breast cancer in Norwegian female radio and telegraph operators. Cancer Causes and Control, 7, 197–204.Google Scholar
Amelsvoort, L. G., Schouten, E. G. & Kok, F. J. (2004). Impact of one year of shift work on cardiovascular disease risk factors. Journal of Occupational and Environmental Medicine, 46, 699–706.CrossRefGoogle Scholar
Williamson, A. M. & Feyer, A.-M. (1995). Causes of accidents and time of day. Work and Stress, 9, 158–64.CrossRefGoogle Scholar
Zhu, J. L., Hjollund, N. H. & Olsen, J. (2004). Shift work, duration of pregnancy, and birth weight: the National Birth Cohort in Denmark. American Journal of Obstetrics and Gynecology, 191, 285–91.Google Scholar

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