Journal of Behavioral Medicine

, Volume 14, Issue 6, pp 607–626 | Cite as

Incidence of laboratory-based heart rate reactivity during typical daily events

  • Christopher F. Sharpley
  • Sybil M. McLean
Article

Abstract

Heart rate reactivity to a standardized laboratory stressor (mental arithmetic under timed and competitive conditions) was measured in 37 men and women, drawn from white- and blue-collar occupations. In addition, heart rate reactivity data during 4 hr of work were gathered on each of these subjects and analyzed to determine (1) the presence during work time of reactivity equal to or greater than that to the mental arithmetic stressor; (2) the incidence of reactivity of 5, 10, 15, and 20 bpm during work time, and (3) the predictability of frequency of work time reactivity by mental arithmetic reactivity. Data suggested that, although there were several incidences of heart rate reactivity responses during work which were similar to those noted in the laboratory, these work heart rate responses were not able to be significantly predicted by laboratory heart rate responses.

Key words

heart rate reactivity laboratory generalizability workplace occupation 

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References

  1. Blascovich, J., Schiffert, J. H, and Katkin, E. S. (1989, October). A comparison of exercise and psychophysiological stress tests for coronary disease. Paper presented at the annual meeting of the Society for Psychophysiological Research, New Orleans, LA.Google Scholar
  2. Carroll, D., Turner, J. R., Lee, H. J., and Stephenson, J. (1984). Temporal consistency of individual differences in cardiac response to a video game.Biol. Psychol. 19: 81–93.PubMedGoogle Scholar
  3. Corse, C. D., Manuck, S. B., Cantwell, J. D., Giodani, B., and Matthews, K. A. (1982). Coronary-prone behavior pattern and cardiovascular response in persons with and without coronary heart disease.Psychosom. Med. 44: 449–459.PubMedGoogle Scholar
  4. Crosbie, J., and Sharpley, C. F. (1989). PHYSDAT: A program for detecting change in ongoing psychological data.Behavioural Computing, Monash University, Australia.Google Scholar
  5. Fahrenberg, J., Foerster, F., Schneider, H., Muller, W., and Myrtek, M. (1986). Predictability of individual differences in activation processes in a field setting based on laboratory measures.Psychophysiology 23: 323–333.PubMedGoogle Scholar
  6. Falkner, B., Onesti, G., Angelakos, E. T., Fernandes, M., and Lanzman, C. (1979). Cardiovascular responses to mental stress in normal adolescents with hypertensive parents.Hypertension 1: 23–30.PubMedGoogle Scholar
  7. Haft, J. I. (1974). Cardiovascular injury induced by sympathetic catecholamines.Prog. Cardiovas. Dis. 17: 73–86.Google Scholar
  8. Halon, D. A., Sapoznikov, D., Lewis, B. S., and Gotsman, M. S. (1983). Localization of lesions in coronary circulation.Am. J. Cardiol. 52: 921–926.PubMedGoogle Scholar
  9. Hastrup, J. L. (1986). Duration of initial heart rate assessment inPsychophysiology: Current practices and implications.Psychophysiology 23: 15–18.PubMedGoogle Scholar
  10. Harshfield, G. A., James, G. C., Schlussel, Y., Yee, L. S., Blank, S. G., and Pickering, T. G. (1988). Do laboratory tests of blood pressure reactivity predict blood pressure changes during everyday life?Am. J. Hyperten. 1: 168–174.Google Scholar
  11. Hines, E. A., and Brown, G. E. (1932). Standard stimulus for measuring vasomotor reactions: Its application in the study of hypertension.Proc. Mayo Clin. 7: 332–335.Google Scholar
  12. Johnston, D. W., Anastasiades, P., and Wood, C. (1990). The relationship between cardiovascular responses in the laboratory and in the field.Psychophysiology 27: 34–44.PubMedGoogle Scholar
  13. Jorgensen, R. S., Nash, J. K., Lasser, N. L., Hymowitz, N., and Langer, A. W. (1988). Heart rate acceleration and its relationship to total serum cholesterol, triglycerides, and blood pressure reactivity in men with mild hypertension.Psychophysiology 25: 39–44.PubMedGoogle Scholar
  14. Kerlinger, F. N. (1986).Foundations of Behavioral Research, 3rd ed., CBS College Publishing, New York.Google Scholar
  15. Keys, A., Taylor, H. L., Blackburn, H., Brozek, J., Anderson, J. T., and Simonson, E. (1971). Mortality and coronary heart disease among men studied for 23 years.Arch. Intern. Med. 128: 201–214.PubMedGoogle Scholar
  16. Krantz, D. S., Contrada, R. J., Hill, D. R., and Friedler, E. (1988). Environmental stress and biobehavioral antecedents of coronary heart disease.J. Consult. Clin. Psychol. 56: 333–341.PubMedGoogle Scholar
  17. Light, K. C. (1987). Psychosocial precursors of hypertension: Experimental evidence.Circulation 76 (Suppl. 1): 67–76.Google Scholar
  18. Manuck, S. B., and Krantz, D. S. (1984). Psychophysiologic reactivity in coronary heart disease.Behav. Med. Update 6: 11–15.Google Scholar
  19. Manuck, S. B., Kaplan, J. R., and Clarkson, T. B. (1983). Behaviorally-induced heart-rate reactivity and atherosclerosis in cynomolgus monkeys.Psychosom. Med. 45: 95–108.PubMedGoogle Scholar
  20. Manuck, S. B., Kaplan, J. R., and Matthews, K. A. (1986). Behavioral antecedents of coronary heart disease and atherosclerosis.Arteriosclerosis 6: 1–14.Google Scholar
  21. Matthews, K. A., Manuck, S. B., and Saab, P. G. (1986a). Cardiovascular responses of adolescents during a naturally occurring stressor and their behavioral and psychophysiological predictors.Psychophysiology 23: 198–209.PubMedGoogle Scholar
  22. Matthews, K. A., Weiss, S. M., Detre, T., Dembroski, T. M., Falkner, B., Manuck, S. B., and Williams, R. B. (1986b).Handbook of Stress, Reactivity and Cardiovascular Disease, Wiley, New York.Google Scholar
  23. McKinney, M. E., Miner, M. H., Ruddel, H., McIlvain, H. E., Witte, H., Buell, J. C., Eliot, R. S., and Grant, L. B. (1985). The standardized mental stress test protocol: Test-retest reliability and comparison with ambulatory blood pressure monitoring.Psychophysiology 22: 453–463.PubMedGoogle Scholar
  24. Nerum, R. M. (1984). Atherogenesis: Hemodynamics, vasculature geometry and the endothelium.Biorheology 21: 565–569.PubMedGoogle Scholar
  25. Rose, R. J., and Chesney, M. A. (1986). Cardiovascular stress reactivity: A behavior-genetic perspective.Behav. Ther. 17: 314–323.Google Scholar
  26. Ross, R. (1986). The pathogenesis of atherosclerosis — an update.N. Eng. J. Med. 314: 488–500.Google Scholar
  27. Ross, R., and Glomset, J. (1976). The pathogenesis of atherosclerosis.N. Eng. J. Med. 295: 369–377, 420–425.Google Scholar
  28. Sharpley, C. F. (1989). Biofeedback training versus simple instructions to reduce heart rate reactivity to a psychological stressor.J. Behav. Med. 12: 435–448.PubMedGoogle Scholar
  29. Sharpley, C. F., and Hattie, J. A. (1985). Naive versus sophisticated item-writers for the assessment of anxiety.J. Clin. Psychol. 41: 58–62.PubMedGoogle Scholar
  30. Sharpley, C. F., Scuderi, C. S., and Heffernan, C. J. (1989). Reliability of heart-rate reactivity to a psychological stressor.Percep. Motor Skills 68: 319–322.Google Scholar
  31. Sharpley, C. F., Tillinh, H., and Plail, E. (1990). parent-child correlations in heart rate reactivity to a psychological stressor.Br. J. Dev. Psychol. 8: 373–381.Google Scholar
  32. Sulzer-Ararzoff, B., and Mayer, R. (1977).Applying Behavior-Analysis Procedures to Children and Youth. Holt, Rinehart & Winston, New York.Google Scholar
  33. Texon, M. (1980).Hemodynamic Basis of Atherosclerosis, Hemisphere, Washington, DC.Google Scholar
  34. Treiber, F., Musante, L., Hartdagan, S., Davis, H., Levy, M., and Strong, W. (1989). Validation of a heart rate monitor with children in laboratory and field settings.Med. Sci. Sports Exercise 21: 338–342.Google Scholar
  35. Turner, J. R., and Carroll. D. (1985). The relationship between laboratory and “real world” heart rate reactivity: An exploratory study. In Orlebeke, J. F., Mulder, G., and van Doornen, L. J. (eds.),Psychophysiology of Cardiovascular Control, Plenum, New York, pp. 895–908.Google Scholar
  36. van Doornen, L. J. P. (1986). Sex differences in physiological reactions to real life stress and their relationship to psychological variables.Psychophysiology 23: 657–662.PubMedGoogle Scholar
  37. Warren, P., and Fischbein, C. (1980). Identification of labile hypertension in children of hypertensive parents.Conn. Med. 44: 77–79.Google Scholar
  38. Watson, R. D., Stallard, T. J., Flinn, R. M., and Littler, W. A. (1980). Factors determining direct arterial pressure and its variability in hypertensive man.Hypertension 2: 333–341.PubMedGoogle Scholar
  39. Wilder, J. (1967).Stimulus and Response: The Law of Initial Value, Wright, Bristol.Google Scholar
  40. Zung, W. W. (1971). A rating instrument of anxiety disorders.Psychosomatics 12: 371–379.PubMedGoogle Scholar
  41. Zung, W. W. (1980).How Normal is Anxiety, Upjohn, Durham, NC.Google Scholar

Copyright information

© Plenum Publishing Corporation 1991

Authors and Affiliations

  • Christopher F. Sharpley
    • 1
  • Sybil M. McLean
    • 1
  1. 1.Faculty of Education, School of Graduate StudiesMonash UniversityClaytonAustralia

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