The Effect of Change of Working Schedule on Health Behaviors: Evidence from the Korea Labor and Income Panel Study (2005–2019)
Abstract
:1. Introduction
2. Materials and Methods
2.1. Data and Study Participants
2.2. Key Variables
2.3. Covariates
2.4. Statistical Analysis
3. Results
4. Discussion
5. Conclusions
Supplementary Materials
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- Aleksynska, M.; Berg, J.; Foden, D.; Johnston, H.E.S.; Parent-Thirion, A.; Vanderleyden, J. Working Conditions in a Global Perspective; Publications Office of the European Union: Luxembourg, 2019. [Google Scholar]
- Torquati, L.; Mielke, G.I.; Brown, W.J.; Kolbe-Alexander, T. Shift work and the risk of cardiovascular disease. A systematic review and meta-analysis including dose-response relationship. Scand. J. Work Environ. Health 2018, 44, 229–238. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Liu, Q.; Shi, J.; Duan, P.; Liu, B.; Li, T.; Wang, C.; Li, H.; Yang, T.; Gan, Y.; Wang, X.; et al. Is shift work associated with a higher risk of overweight or obesity? A systematic review of observational studies with meta-analysis. Int. J. Epidemiol. 2018, 47, 1956–1971. [Google Scholar] [CrossRef] [Green Version]
- Gao, Y.; Gan, T.; Jiang, L.; Yu, L.; Tang, D.; Wang, Y.; Li, X.; Ding, G. Association between shift work and risk of type 2 diabetes mellitus: A systematic review and dose-response meta-analysis of observational studies. Chronobiol. Int. 2020, 37, 29–46. [Google Scholar] [CrossRef] [PubMed]
- Watanabe, K.; Sakuraya, A.; Kawakami, N.; Imamura, K.; Ando, E.; Asai, Y.; Eguchi, H.; Kobayashi, Y.; Nishida, N.; Arima, H.; et al. Work-related psychosocial factors and metabolic syndrome onset among workers: A systematic review and meta-analysis. Obes. Rev. 2018, 19, 1557–1568. [Google Scholar] [CrossRef]
- Torquati, L.; Mielke, G.I.; Brown, W.J.; Burton, N.W.; Kolbe-Alexander, T.L. Shift work and poor mental health: A meta-analysis of longitudinal studies. Am. J. Public Health 2019, 109, e13–e20. [Google Scholar] [CrossRef]
- Ambrose, J.A.; Barua, R.S. The pathophysiology of cigarette smoking and cardiovascular disease: An update. J. Am. Coll. Cardiol. 2004, 43, 1731–1737. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Sun, K.; Ren, M.; Liu, D.; Wang, C.; Yang, C.; Yan, L. Alcohol consumption and risk of metabolic syndrome: A meta-analysis of prospective studies. Clin. Nutr. 2014, 33, 596–602. [Google Scholar] [CrossRef]
- Sack, R.L.; Auckley, D.; Auger, R.R.; Carskadon, M.A.; Wright Jr, K.P.; Vitiello, M.V.; Zhdanova, I.V. Circadian rhythm sleep disorders: Part I, basic principles, shift work and jet lag disorders. Sleep 2007, 30, 1460–1483. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Cappuccio, F.; Miller, M.A.; Lockley, S.W. Sleep, Health, and Society: From Aetiology to Public Health; Oxford University Press: New York, NY, USA, 2010. [Google Scholar]
- Pisarski, A.; Lawrence, S.A.; Bohle, P.; Brook, C. Organizational influences on the work life conflict and health of shiftworkers. Appl. Ergon. 2008, 39, 580–588. [Google Scholar] [CrossRef] [PubMed]
- Fujino, Y.; Iso, H.; Tamakoshi, A.; Inaba, Y.; Koizumi, A.; Kubo, T.; Yoshimura, T. A prospective cohort study of shift work and risk of ischemic heart disease in Japanese male workers. Am. J. Epidemiol. 2006, 164, 128–135. [Google Scholar] [CrossRef] [Green Version]
- Puttonen, S.; Kivimäki, M.; Elovainio, M.; Pulkki-Råback, L.; Hintsanen, M.; Vahtera, J.; Telama, R.; Juonala, M.; Viikari, J.S.; Raitakari, O.T.; et al. Shift work in young adults and carotid artery intima-media thickness: The cardiovascular risk in young finns study. Atherosclerosis 2009, 205, 608–613. [Google Scholar] [CrossRef] [PubMed]
- Knutsson, A.; Andersson, H.; Berglund, U. Serum lipoproteins in day and shift workers: A prospective study. Br. J. Ind. Med. 1990, 47, 132–134. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Buchvold, H.V.; Pallesen, S.; Waage, S.; Moen, B.E.; Bjorvatn, B. Shift work and lifestyle factors: A 6-year follow-up study among nurses. Front. Public Health 2019, 7, 00281. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Nabe-Nielsen, K.; Garde, A.H.; Tüchsen, F.; Hogh, A.; Diderichsen, F. Cardiovascular risk factors and primary selection into shift work. Scand J Work Environ Health 2008, 206–212. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Bøggild, H.; Knutsson, A. Shift work, risk factors and cardiovascular disease. Scand. J. Work Environ. Health 1999, 25, 85–99. [Google Scholar] [CrossRef]
- Bae, M.-J.; Song, Y.-M.; Shin, J.-Y.; Choi, B.-Y.; Keum, J.-H.; Lee, E.-A. The association between shift work and health behavior: Findings from the Korean national health and nutrition examination survey. Korean J. Fam. Med. 2017, 38, 86–92. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Cheng, W.-J.; Härmä, M.; Koskinen, A.; Kivimäki, M.; Oksanen, T.; Huang, M.-C. Intraindividual association between shift work and risk of drinking problems: Data from the Finnish Public Sector Cohort. Occup. Environ. Med. 2021, 78, 465–471. [Google Scholar] [CrossRef]
- Richter, K.; Peter, L.; Rodenbeck, A.; Weess, H.G.; Riedel-Heller, S.G.; Hillemacher, T. Shiftwork and alcohol consumption: A systematic review of the literature. Eur. Addict. Res. 2021, 27, 9–15. [Google Scholar] [CrossRef]
- Lee, J.-H.; Kang, M.-Y. The influence of chronic diseases on self-reported work disability: Evidence from the Korean Labor and Income Panel Study 2003–2018. J. Occup. Environ. Med. 2021, 63, e732–e736. [Google Scholar] [CrossRef]
- Choi, S.B.; Yoon, J.-H.; Lee, W. The modified international standard classification of occupations defined by the clustering of occupational characteristics in the Korean Working Conditions Survey. Ind. Health 2019, 58, 132–141. [Google Scholar] [CrossRef] [Green Version]
- van Amelsvoort, L.G.; Schouten, E.G.; Kok, F.J. Impact of one year of shift work on cardiovascular disease risk factors. J. Occup. Environ. Med. 2004, 46, 699–706. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- van Amelsvoort, L.G.; Jansen, N.W.; Kant, I. Smoking among shift workers: More than a confounding factor. Chronobiol. Int. 2006, 23, 1105–1113. [Google Scholar] [CrossRef] [PubMed]
- Azagba, S.; Sharaf, M.F. The effect of job stress on smoking and alcohol consumption. Health Econ. Rev. 2011, 1, 15. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Sinha, R. Chronic stress, drug use, and vulnerability to addiction. Ann. N. Y. Acad. Sci. 2008, 1141, 105–130. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Richards, J.M.; Stipelman, B.A.; Bornovalova, M.A.; Daughters, S.B.; Sinha, R.; Lejuez, C.W. Biological mechanisms underlying the relationship between stress and smoking: State of the science and directions for future work. Biol. Psychol. 2011, 88, 1–12. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Koob, G.F.; Le Moal, M. Drug abuse: Hedonic homeostatic dysregulation. Science 1997, 278, 52–58. [Google Scholar] [CrossRef]
- Melis, M.; Diana, M.; Enrico, P.; Marinelli, M.; Brodie, M.S. Ethanol and acetaldehyde action on central dopamine systems: Mechanisms, modulation, and relationship to stress. Alcohol 2009, 43, 531–539. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Ostroumov, A.; Thomas, A.M.; Kimmey, B.A.; Karsch, J.S.; Doyon, W.M.; Dani, J.A. Stress increases ethanol self-administration via a shift toward excitatory GABA signaling in the ventral tegmental area. Neuron 2016, 92, 493–504. [Google Scholar] [CrossRef] [Green Version]
- Muraven, M.; Baumeister, R.F. Self-regulation and depletion of limited resources: Does self-control resemble a muscle? Psychol. Bull. 2000, 126, 247–259. [Google Scholar] [CrossRef]
- Ayyagari, P.; Sindelar, J.L. The impact of job stress on smoking and quitting: Evidence from the HRS. BE J. Econom. Anal. Policy 2010, 10. [Google Scholar] [CrossRef]
- James, S.M.; Honn, K.A.; Gaddameedhi, S.; Van Dongen, H.P.A. Shift work: Disrupted circadian rhythms and sleep-implications for health and well-being. Curr. Sleep Med. Rep. 2017, 3, 104–112. [Google Scholar] [CrossRef] [PubMed]
- Collop, N.A.; Salas, R.E.; Delayo, M.; Gamaldo, C. Normal sleep and circadian processes. Crit. Care Clin. 2008, 24, 449–460. [Google Scholar] [CrossRef] [PubMed]
- Cheng, W.J.; Cheng, Y. Night shift and rotating shift in association with sleep problems, burnout and minor mental disorder in male and female employees. Occup. Environ. Med. 2017, 74, 483–488. [Google Scholar] [CrossRef] [PubMed]
- Choi, S.J.; Song, P.; Suh, S.; Joo, E.Y.; Lee, S.I. Insomnia symptoms and mood disturbances in shift workers with different chronotypes and working schedules. J. Clin. Neurol. 2020, 16, 108–115. [Google Scholar] [CrossRef] [PubMed]
- Haario, P.; Rahkonen, O.; Laaksonen, M.; Lahelma, E.; Lallukka, T. Bidirectional associations between insomnia symptoms and unhealthy behaviours. J. Sleep Res. 2013, 22, 89–95. [Google Scholar] [CrossRef] [PubMed]
- Karan, L.; Dani, J.; Benowitz, N. The pharmacology of nicotine and tobacco. In Principles of Addiction Medicine; LWW: Philadelphia, PA, USA, 2003; pp. 225–248. [Google Scholar]
- Ohida, T.; Kawahara, K.; Osaki, Y.; Sone, T.; Kamal, A.M.; Kawaguchi, T.; Sekiyama, M.; Harita, A.; Minowa, M. Behaviors and attitudes towards smoking among the nurses in Japan. J. Epidemiol. 2000, 10, 344–348. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Stein, M.D.; Friedmann, P.D. Disturbed sleep and its relationship to alcohol use. Subst. Abus. 2005, 26, 1–13. [Google Scholar] [CrossRef] [Green Version]
- Soldatos, C.R.; Allaert, F.A.; Ohta, T.; Dikeos, D.G. How do individuals sleep around the world? Results from a single-day survey in ten countries. Sleep Med. 2005, 6, 5–13. [Google Scholar] [CrossRef]
- Roehrs, T.; Roth, T. Sleep, sleepiness, and alcohol use. Alcohol Res. Health 2001, 25, 101. [Google Scholar]
- Steptoe, A.; Wardle, J. Health-related behaviour: Prevalence and links with disease. In Health Psychology; Kaptein, A., Weinman, J., Eds.; Blackwell Publishing: Oxford, UK, 2004; pp. 21–51. [Google Scholar]
- Herichova, I. Changes of physiological functions induced by shift work. Endocr. Regul. 2013, 47, 159–170. [Google Scholar] [CrossRef]
Shift Work, n (%) | p-Value * | ||
---|---|---|---|
No | Yes | ||
No. of participants | 3624 (89.6) | 422 (10.4) | |
Age (years) | 0.0002 | ||
15–20 | 36 (76.6) | 11 (23.4) | |
21–40 | 2078 (91.1) | 204 (8.9) | |
41–60 | 1355 (89.2) | 164 (10.8) | |
>60 | 155 (78.3) | 43 (21.7) | |
Sex | <0.0001 | ||
Male | 2164 (87.7) | 304 (12.3) | |
Female | 1460 (92.5) | 118 (7.5) | |
Education level | <0.0001 | ||
Middle school | 713 (88.9) | 89 (11.1) | |
High School | 1205 (85.2) | 209 (14.8) | |
College or higher | 1706 (93.2) | 124 (6.8) | |
Occupational classification | <0.0001 | ||
White-collar | 1743 (95.9) | 74 (4.1) | |
Pink-collar | 478 (86.4) | 75 (13.6) | |
Green-collar | 10 (100.0) | 0 (0.0) | |
Blue-collar | 1393 (83.6) | 273 (16.4) | |
Monthly wage income ($, USD) | 0.0911 | ||
<1500 | 929 (87.8) | 129 (12.2) | |
1500–2000 | 899 (91.2) | 98 (9.8) | |
2000–2500 | 668 (91.4) | 63 (8.6) | |
>2500 | 1128 (89.5) | 132 (10.5) | |
Self-rated health status | 0.6508 | ||
Good | 2174 (89.4) | 258 (10.6) | |
Moderate | 1204 (90.1) | 132 (9.9) | |
Bad | 246 (88.5) | 32 (11.5) | |
Smoking status | 0.4557 | ||
Never or past | 2321 (89.8) | 263 (10.2) | |
Current | 1303 (89.1) | 159 (10.9) | |
Drinking status | 0.0696 | ||
Never or social | 2310 (90.2) | 250 (9.8) | |
Binge | 1314 (88.4) | 172 (11.6) |
Work Schedule Change Each Year | Total (Person-Years) | Healthy to Unhealthy Behavior | Never or Past to Current Smoking | Never or Social to Binge Drinking |
---|---|---|---|---|
Day–Day workers | 25,716 | 4117 (16.0) | 1338 (5.2) | 3181 (12.4) |
Day–Shift workers | 670 | 124 (18.5) | 43 (6.4) | 97 (14.5) |
Shift–Day workers | 739 | 122 (16.5) | 48 (6.5) | 89 (12.0) |
Shift–Shift workers | 2370 | 419 (17.7) | 148 (6.2) | 307 (12.9) |
Work Schedule Change Each Year | Healthy to Unhealthy Behavior | Never or Past to Current Smoking | Never or Social to Binge Drinking |
---|---|---|---|
OR (95% CI) | OR (95% CI) | OR (95% CI) | |
Day–Day workers | 1.00 | 1.00 | 1.00 |
Day–Shift workers | 1.18 (1.05–1.44) | 1.20 (0.87–1.65) | 1.19 (1.02–1.49) |
Shift–Day workers | 1.01 (0.83–1.23) | 1.21 (0.89–1.63) | 0.95 (0.76–1.20) |
Shift–Shift workers | 1.11 (1.01–1.26) | 1.05 (0.87–1.26) | 1.12 (0.98–1.27) |
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Jung, S.; Lee, S.-Y.; Lee, W. The Effect of Change of Working Schedule on Health Behaviors: Evidence from the Korea Labor and Income Panel Study (2005–2019). J. Clin. Med. 2022, 11, 1725. https://doi.org/10.3390/jcm11061725
Jung S, Lee S-Y, Lee W. The Effect of Change of Working Schedule on Health Behaviors: Evidence from the Korea Labor and Income Panel Study (2005–2019). Journal of Clinical Medicine. 2022; 11(6):1725. https://doi.org/10.3390/jcm11061725
Chicago/Turabian StyleJung, Saemi, Seung-Yeon Lee, and Wanhyung Lee. 2022. "The Effect of Change of Working Schedule on Health Behaviors: Evidence from the Korea Labor and Income Panel Study (2005–2019)" Journal of Clinical Medicine 11, no. 6: 1725. https://doi.org/10.3390/jcm11061725
APA StyleJung, S., Lee, S. -Y., & Lee, W. (2022). The Effect of Change of Working Schedule on Health Behaviors: Evidence from the Korea Labor and Income Panel Study (2005–2019). Journal of Clinical Medicine, 11(6), 1725. https://doi.org/10.3390/jcm11061725