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Autonomic Regulation of Cardiac Activity During Mental Calculation in Athletes. P. 205–215

Версия для печати

Section: Medical and biological sciences

UDC

612.821

DOI

10.17238/issn2542-1298.2019.7.2.205

Authors

Andrey A. Mel’nikov*
*Yaroslavl Higher Military School of Counter-Air Defence (Yaroslavl, Russian Federation)
Corresponding author: Andrey Mel’nikov, address: prosp. Moskovskiy 28, Yaroslavl, 150001, Russian Federation; e-mail: meln1974@yandex.ru

Abstract

The study investigated the autonomic regulation of the circulatory system (central haemodynamics (CHD) and heart rate variability (HRV)) during mental calculation in young athletes (n = 95) of different specializations with a long training experience (8.0 ± 3.5 years). Indicators of central haemodynamics (stroke volume, cardiac output) and HRV (standard deviation of NN intervals (SDNN), low frequency (LF) and (HF) power, LF/HF ratio, stress index) were determined simultaneously using impedance cardiorheography (Medass company, Russia) before and during mental calculation (“500 – 7”) in supine position. It was established that at rest as well as during mental calculation, athletes had lower heart rate, total peripheral resistance, and diastolic and mean arterial pressure, while they had higher stroke volume, cardiac output, arterial compliance index, and HRV (SDNN, LF, HF) than the control group (n = 61). The CHD and HRV indicators during mental calculation correlated with the physical working capacity index PWC170. The increase in diastolic arterial pressure (p = 0.012), SDNN (p = 0.064) and LF (p = 0.054) in athletes during calculation was larger, while the decrease in stroke volume (p = 0.025) and, especially, in arterial compliance (p < 0.00002) was smaller, compared to the control group. PWC170 index in the united group (n = 156) correlated with the changes in arterial compliance (r = 0.252, p = 0.002). Thus, cardiac activity in athletes during psycho-emotional stress caused by mental calculation was characterized by greater efficiency of cardiac haemodynamics, increased HRV, as well as a less significant reduction in arterial compliance, indicating higher tolerance to psycho-emotional stress. The obtained data allow us to consider regular exercises to be an important measure preventing the development of various disorders of the circulatory system caused by psychoemotional stress.

Keywords

cardiac haemodynamics, heart rate variability, mental arithmetic, psycho-emotional stress, athletes
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References

1. Silverman M.N., Deuster P.A. Biological Mechanisms Underlying the Role of Physical Fitness in Health and Resilience. Interface Focus, 2014, vol. 4, no. 5. Art. no. 20140040. DOI: 10.1098/rsfs.2014.0040
2. Panaite V., Salomon K., Jin A., Rottenberg J. Cardiovascular Recovery from Psychological and Physiological Challenge and Risk for Adverse Cardiovascular Outcomes and All-Cause Mortality. Psychosom. Med., 2015, vol. 77, no. 3, pp. 215–226.
3. Traustadóttir T., Bosch P.R., Cantu T., Matt K.S. Hypothalamic-Pituitary-Adrenal Axis Response and Recovery from High-Intensity Exercise in Women: Effects of Aging and Fitness. J. Clin. Endocrinol. Metab., 2004, vol. 89, no. 7, pp. 3248–3254.
4. O’Sullivan S.E., Bell C. Training Reduces Autonomic Cardiovascular Responses to Both Exercise-Dependent and -Independent Stimuli in Humans. Auton. Neurosci., 2001, vol. 91, no. 1-2, pp. 76–84.
5. Dishman R.K., Jackson E.M., Nakamura Y. Influence of Fitness and Gender on Blood Pressure Responses During Active or Passive Stress. Psychophysiology, 2002, vol. 39, no. 6, pp. 568–576.
6. Dishman R.K., Nakamura Y., Jackson E.M., Ray C.A. Blood Pressure and Muscle Sympathetic Nerve Activity During Cold Pressor Stress: Fitness and Gender. Psychophysiology, 2003, vol. 40, no. 3, pp. 370–380.
7. Belotserkovskiy Z.B. Ergometricheskie i kardiologicheskie kriterii fizicheskoy rabotosposobnosti u sportsmenov [Ergometric and Cardiac Criteria of Physical Capacity for Work in Athletes]. Moscow, 2005. 312 p.
8. Heart Rate Variability: Standards of Measurement, Physiological Interpretation and Clinical Use. Task Force of the European Society of Cardiology and the North American Society of Pacing and Electrophysiology. Circulation, 1996, vol. 93, no. 5, pp. 1043–1065.
9. Okazaki K., Iwasaki K., Prasad A., Palmer M.D., Martini E.R., Fu Q., Arbab Zadeh A., Zhang R., Levine B.D. Dose-Response Relationship of Endurance Training for Autonomic Circulatory Control in Healthy Seniors. J. Appl. Physiol. (1985), 2005, vol. 99, no. 3, pp. 1041–1049.
10. Acevedo E.O., Webb H.E., Weldy M.L., Fabianke E.C., Orndorff G.R., Starks M.A. Cardiorespiratory Responses of Hi Fit and Low Fit Subjects to Mental Challenge During Exercise. Int. J. Sports Med., 2006, vol. 27, no. 12, pp. 1013–1022.
11. Szabó A., Brown T.G., Gauvin L., Seraganian P. Aerobic Fitness Does Not Influence Directly Heart Rate Reactivity to Mental Stress. Acta Physiol. Hung., 1993, vol. 81, no. 3, pp. 229–237.
12. Mueller P.J., Hasser E.M. Putative Role of the NTS in Alterations in Neural Control of the Circulation Following Exercise Training in Rats. Am. J. Physiol. Regul. Integr. Comp. Physiol., 2006, vol. 290, no. 2, pp. R383–R392.
13. Mtinangi B.L., Hainsworth R. Effects of Moderate Exercise Training on Plasma Volume, Baroreceptor Sensitivity and Orthostatic Tolerance in Healthy Subjects. Exp. Physiol., 1999, vol. 84, no. 1, pp. 121–130.
14. Sgoifo A., Costoli T., Meerlo P., Buwalda B., Pico’-Alfonso M.A., De Boer S., Musso E., Koolhaas J. Individual Differences in Cardiovascular Response to Social Challenge. Neurosci. Biobehav. Rev., 2005, vol. 29, no. 1, pp. 59–66.
15. Boutcher S.H., Nugent F.W, McLaren P.F., Weltman A.L. Heart Period Variability of Trained and Untrained Men at Rest and During Mental Challenge. Psychophysiology, 1998, vol. 35, no. 1, pp. 16–22.
16. Brown T.E., Beightol L.A., Koh J., Eckberg D.L. Important Influence of Respiration on Human R-R Interval Power Spectra Is Largely Ignored. J. Appl. Physiol. (1985), 1993, vol. 75, no. 5, pp. 2310–2317.
17. Goldstein D.S., Bentho O., Park M.Y., Sharabi Y. Low-Frequency Power of Heart Rate Variability Is Not a Measure of Cardiac Sympathetic Tone but May Be a Measure of Modulation of Cardiac Autonomic Outflows by Baroreflexes. Exp. Physiol., 2011, vol. 96, no. 12, pp. 1255–1261.
18. Cameron J.D., Dart A.M. Exercise Training Increases Total Systemic Arterial Compliance in Humans. Am. J. Physiol., 1994, vol. 266, no. 2, pt. 2, pp. H693–H701.
19. Vlachopoulos C., Kosmopoulou F., Alexopoulos N., Ioakeimidis N., Siasos G., Stefanadis C. Acute Mental Stress Has a Prolonged Unfavorable Effect on Arterial Stiffness and Wave Reflections. Psychosom. Med., 2006, vol. 68, no. 2, pp. 231–237.
20. Di Francescomarino S., Sciartilli A., Di Valerio V., Di Baldassarre A., Gallina S. The Effect of Physical Exercise on Endothelial Function. Sports Med., 2009, vol. 39, no. 10, pp. 797–812.



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