Cite

1.Eurofound. Working time patterns for sustainable work. Publications Office of the European Union, Luxembourg (2018) https://digitalcommons.ilr.cornell.edu/cgi/viewcontent.cgi?article=1635&context=intldownloaded 10.02.2019.Search in Google Scholar

2. Jin J. Screening for Cardiovascular Disease Risk With ECG. JAMA. 2018;319:2346.10.1001/jama.2018.731129896628Search in Google Scholar

3. Otelea MR, Streinu-Cercel A, Băicus C, Nitescu M. The Adipokine Profile and the Cardio-Metabolic Risk in Non-Obese Young Adults. Balkan Med J. 2019;36:155-61.10.4274/balkanmedj.galenos.2018.2018.0789652852630457109Search in Google Scholar

4. Tsai WC, Wu KY, Lin GM, et al. Clinical Characteristics of Patients Less than Forty Years Old with Coronary Artery Disease in Taiwan: A Cross-Sectional Study. Acta Cardiol Sin.2017;33:233–40.Search in Google Scholar

5. George MG, Tong X, Bowman BA. Prevalence of Cardiovascular Risk Factors and Strokes in Younger Adults. JAMA Neurol. 2017;74:695–703.10.1001/jamaneurol.2017.0020555966028395017Search in Google Scholar

6. Paul Leeson, Hypertension and cardiovascular risk in young adult life: insights from CAVI, Eur Heart J Suppl. 2017:19 (suppl_B): B24–B29.10.1093/eurheartj/suw061Open DOISearch in Google Scholar

7. Mozos I, Filimon L. QT and Tpeak-Tend intervals in shift workers. J Electrocardiol. 2013;46:60-5.10.1016/j.jelectrocard.2012.10.01423312361Search in Google Scholar

8. Cakici M, Dogan A, Cetin M, Suner A, Caner A, Polat M, Kaya H, Abus S, Akturk E. Negative effects of acute sleep deprivation on left ventricular functions and cardiac repolarization in healthy young adults. Pacing Clin Electrophysiol. 2015;38:713-22.10.1111/pace.1253425353305Search in Google Scholar

9. Vetter C, Devore EE, Wegrzyn LR, Massa J, Speizer FE, Kawachi I, Rosner B, Stampfer MJ, Schernhammer ES. Association Between Rotating Night Shift Work and Risk of Coronary Heart Disease Among Women. JAMA. 2016;315:1726–34.10.1001/jama.2016.4454510214727115377Search in Google Scholar

10. Popa S, Moţa M, Popa A, Moţa E, Serafinceanu C, Guja C, Catrinoiu D, Hâncu N, Lichiardopol R, Bala C, Popa A, Roman G, Radulian G, Timar R, Mihai B. Prevalence of overweight/obesity, abdominal obesity and metabolic syndrome and atypical cardiometabolic phenotypes in the adult Romanian population: PREDATORR study. J Endocrinol Invest. 2016;39:1045-53.10.1007/s40618-016-0470-427126310Search in Google Scholar

11. Nikpour M, Tirgar A, Hajiahmadi M, Hosseini A, Heidari B, Ghaffari F, Ebadi A, Fatemeh Nasiri-Amiri F, Firouzbakht, M. Shift work and metabolic syndrome: A multi-center cross-sectional study on females of reproductive age. Biomed Rep. 2019;10:311-7.10.3892/br.2019.1211Search in Google Scholar

12. Moreira GC, Cipullo JP, Ciorlia LA, Cesarino CB, Vilela-Martin JF. Prevalence of metabolic syndrome: association with risk factors and cardiovascular complications in an urban population. PLoS One. 2014;9:e105056.10.1371/journal.pone.0105056415212025180496Search in Google Scholar

13. De Bacquer D, De Backer G, Kornitzer M, Blackburn H. Prognostic value of ECG findings for total, cardiovascular disease, and coronary heart disease death in men and women. Heart.1998;80:570–7.10.1136/hrt.80.6.570172887710065025Open DOISearch in Google Scholar

14. Yoo GS, Kim TW.The Effect of Morningness-Eveningness on Shift Work Nurses: Sleep Quality, Depressive Symptoms and Occupational Stress. Sleep Med Res. 2017;8:39-43.10.17241/smr.2017.00045Search in Google Scholar

15. Boudreau P, Dumont GA, Boivin DB. Circadian Adaptation to Night Shift Work Influences Sleep, Performance, Mood and the Autonomic Modulation of the Heart. PLoS ONE 2013;8: e70813.10.1371/journal.pone.0070813Search in Google Scholar

16. Krakauer NY, Krakauer JC. A new body shape index predicts mortality hazard independently of body mass index. PloS One. 2012;7:e39504.10.1371/journal.pone.0039504Search in Google Scholar

17. Morikawa Y, Miura K, Sasaki S, Yoshita K, Yoneyama S, Sakurai M, Ishizaki M, Kido T, Naruse Y, Suwazono Y, Higashiyama M, Nakagawa H. Evaluation of the effects of shift work on nutrient intake: a cross-sectional study. J Occup Health.2008;50:270-8.10.1539/joh.L7116Search in Google Scholar

18. Barger LK, Ogeil RP, Drake CL, O’Brien CS, Ng KT, Rajaratnam SM. Validation of a questionnaire to screen for shift work disorder. Sleep.2012;35:1693–1703.10.5665/sleep.2246Open DOISearch in Google Scholar

19. European Society of Cradiology.Score risk charts. https://www.escardio.org/Education/Practice-Tools/CVD-prevention-toolbox/SCORE-Risk-Charts,pdf dowloaded 10.02.2019.Search in Google Scholar

20. Prineas R, Crow R, Blackburn H. The Minnesota Code Manual of Electrocardiographic Findings. 2nd edition, London: Springer-Verlag; 2010.10.1007/978-1-84882-778-3Search in Google Scholar

21. Sagie A, Larson MG, Goldberg RJ, Bengtson JR, Levy D. An improved method for adjusting the QT interval for heart rate (the Framingham Heart Study). Am J Cardiol. 1992;70:797–801.10.1016/0002-9149(92)90562-DOpen DOISearch in Google Scholar

22. Surawicz Knilans. CHOU’s electrocardiography in clinical practice. 6th ed, Philadelphia: Saunders Elsevier; 2008.Search in Google Scholar

23. Vandenberk B, Vandael E, Robyns T, Vandenberghe J, Garweg C, Foulon V, Ector J, Rik Willems R. Which QT Correction Formulae to Use for QT Monitoring? J Am Heart Assoc. 2016;5:e003264.10.1161/JAHA.116.003264493726827317349Search in Google Scholar

24. 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. 2016;74:483-488.10.1136/oemed-2016-103898Search in Google Scholar

25. Kazemi R, Motamedzade M, Golmohammadi R, Mokarami H, Hemmatjo R, Heidarimoghadam R. Field Study of Effects of Night Shifts on Cognitive Performance, Salivary Melatonin, and Sleep. Saf Health Work. 2018;9:203-9.10.1016/j.shaw.2017.07.007600591429928535Open DOISearch in Google Scholar

26. Asarnow LD, Soehner AM, Harvey AG. Circadian rhythms and psychiatric illness. Curr Opin Psychiatry. 2013;26:566–71.10.1097/YCO.0b013e328365a2fa400056024060916Search in Google Scholar

27. Nakajima K. Unhealthy eating habits around sleep and sleep duration: To eat or fast? World J Diabetes.2018;9:190–4.10.4239/wjd.v9.i11.190624272230479684Open DOISearch in Google Scholar

28. Patterson F, Grandner MA, Malone SK, Rizzo A, Davey A, Edwards DG. Sleep as a Target for Optimized Response to Smoking Cessation Treatment. Nicotine Tob Res. 2019; 21:139–48.10.1093/ntr/ntx236632940429069464Open DOISearch in Google Scholar

29. Hasler BP, Clark DB. Circadian misalignment, reward-related brain function, and adolescent alcohol involvement. Alcohol Clin Exp Res. 2013;37:558–65.10.1111/acer.12003384348423360461Search in Google Scholar

30. Hasler BP, Smith LJ, Cousins JC, Bootzin RR. Circadian rhythms, sleep, and substance abuse. Sleep Med Rev. 2012;16:67–81.10.1016/j.smrv.2011.03.004317701021620743Search in Google Scholar

31. Cappuccio FP, Miller MA. Sleep and Cardio-Metabolic Disease. Curr Cardiol Rep. 2017;19:110.10.1007/s11886-017-0916-0560559928929340Search in Google Scholar

32. Xi B, He D, Zhang M, Xue J, Zhou D. Short sleep duration predicts risk of metabolic syndrome: A systematic review and meta-analysis. Sleep Med Rev.2014;18:293-297.10.1016/j.smrv.2013.06.00123890470Open DOISearch in Google Scholar

33. Yeom JH, Sim CS, Lee J, Yun SH, Park SJ, Yoo C-I, Sung JH. Effect of shift work on hypertension: cross sectional study. Ann Occup Environ Med.2017;29:11.2840096110.1186/s40557-017-0166-z538725828400961Search in Google Scholar

34. Karlsson B, Alfredsson L, Knutsson A, Andersson E, Torén K. Total mortality and cause-specific mortality of Swedish shiftand dayworkers in the pulp and paper industry in 1952-2001. Scand J Work Environ Health. 2005;31:30-5.10.5271/sjweh.84515751616Search in Google Scholar

35. Shan Z, Li Y, Zong G, Guo Y, Li J, Manson JoAnn, Hu FB, Willett WC, Schernhammer ES, Bhupathiraju SN. Rotating night shift work and adherence to unhealthy lifestyle in predicting risk of type 2 diabetes: results from two large US cohorts of female nurses BMJ. 2018; 363:k4641.10.1136/bmj.k4641624717230464025Search in Google Scholar

36. West AC, Smith L, David W. Ray DW, Loudon ASI, Brown TM, Bechtold DA. Misalignment with the external light environment drives metabolic and cardiac dysfunction. Nat. Commun. 2017:8:417.2890018910.1038/s41467-017-00462-2559590528900189Search in Google Scholar

37. Lo SH, Lin LY, Hwang JS, Chang YY, Liau CS, Wang JD. Working the night shift causes increased vascular stress and delayed recovery in young women. Chronobiol Int. 2010;27:1454–68.10.3109/07420528.2010.498067467356520795886Open DOISearch in Google Scholar

38. Holmes AL, Burgess HJ, McCulloch K, Lamond N, Fletcher A, Dorrian J, Roach G, Dawson D. Daytime cardiac autonomic activity during one week of continuous night shift. J Hum Ergol (Tokyo). 2001;30:223-8.Search in Google Scholar

39. Morris CJ, Purvis TE, Hu K, Scheer FA. Circadian misalignment increases cardiovascular disease risk factors in humans. Proc Natl Acad Sci U S A. 2016;113:E1402–E1411.10.1073/pnas.1516953113479099926858430Search in Google Scholar

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