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The Nature of Total Power and Very Low Frequency Waves on the Interval Electrocardiogram from the Standpoint of the Human Body’s Adaptation to Motor Activity (Review). P. 95-107

Версия для печати

Section: Review articles

UDC

612.181+612.172+796

DOI

10.37482/2687-1491-Z134

Authors

Denis A. Kataev*/** ORCID: https://orcid.org/0000-0002-8051-3521
Viktor I. Tsirkin*/*** ORCID: https://orcid.org/0000-0003-3467-3919
Vlada V. Kishkina*/**** ORCID: https://orcid.org/0000-0003-2467-5275
Svetlana I. Trukhina* ORCID: https://orcid.org/0000-0003-3888-1993
Andrey N. Trukhin* ORCID: https://orcid.org/0000-0001-7259-7078

*Vyatka State University (Kirov, Russian Federation)
**Tatarstan Cross-Country Skiing Federation (Kazan, Republic of Tatarstan)
***Kazan State Medical University (Kazan, Republic of Tatarstan)
****City Clinical Hospital No. 1 (Chelyabinsk, Russian Federation)

Corresponding author: Svetlana Trukhina, address: ul. Moskovskaya 36, Kirov, 610000, Russian Federation; e-mail: trukhinasvetlana@yandex.ru

Abstract

It is known that heart rate variability (HRV), evaluated using interval electrocardiography (ECG), reflects the influence of the autonomic nervous system (АNS) and biologically active substances on cardiac activity. For this reason, interval ECG method is widely used in sports, as it reveals the mechanisms of human adaptation to motor activity. This article analyses data on the median values of the total power (TP) of the HRV spectrum and absolute and relative power of very low frequency (VLF) waves on the interval electrocardiogram in athletes recorded in the supine position. We chose these three indicators out of more than 30 others due to their informativeness and due to the debatable issue of the nature of VLF waves. Literature data and unpublished results of our studies allow us to conclude that the values of these indicators in athletes depend on a number of factors, including type of sports (being especially high in sports building aerobic endurance), level of athletic skill (being maximum in elite athletes) as well as volume and intensity of training. In elite skiers, the values of these three indicators tend to change in the course of the training year, increasing in the preparatory phase, staying at a high level or even increasing during the competitive phase, and decreasing in the transition phase, which is determined by the relevant dynamics of the training volume throughout the year. The authors believe that the increase in the values of these three HRV indicators points to the growing influence of the parasympathetic division of ANS and non-neuronal acetylcholine on cardiac activity under heavy training volumes. According to the authors, the values of these three indicators reflect the level of aerobic motor activity (the higher they are, the higher this activity).

Keywords

athletes, adaptation to physical exertion, autonomic nervous system, heart rate variability, total power of the spectrum, power of VLF waves, non-neuronal acetylcholine, phases of the training year
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References

  1. Li X., Li Y. Sports Training Strategies and Interactive Control Methods Based on Neural Network Models. Comput. Intell. Neurosci., 2022, vol. 2022. Art. no. 7624578. DOI: 10.1155/2022/7624578
  2. Gavrilova E.A. Sport, stress, variabel’nost’ [Sport, Stress, Variability]. Moscow, 2015. 168 p.
  3. Kalabin O.V., Mikhaylov M.M. Primenenie ekspress-metoda analiza variabel’nosti ritma serdtsa dlya korrektsii trenirovochnogo protsessa v voleybole [Application of an Express Method for Analysing Heart Rate Variability to Correct Volleyball Training Process]. Shlyk N.I. (ed.). Variabel’nost’ serdechnogo ritma: teoreticheskie aspekty i prakticheskoe primenenie v sporte i massovoy fizkul’ture [Heart Rate Variability: Theoretical Background and Practical Application in Sports and Mass Culture]. Izhevsk, 2021, pp. 152–157.
  4. Krotova K.A., Terekhov P.A. Osobennosti variabel’nosti serdechnogo ritma u short-trekovikov pri ortostaticheskoy probe s uchetom gendernykh razlichiy [Heart Rate Variability in Short Track Speed Skaters During an Orthostatic Test, Adjusted for Gender]. Shlyk N.I. (ed.). Variabel’nost’ serdechnogo ritma: teoreticheskie aspekty i prakticheskoe primenenie v sporte i massovoy fizkul’ture [Heart Rate Variability: Theoretical Background and Practical Application in Sports and Mass Culture]. Izhevsk, 2021, pp. 158–162.
  5. Mikhaylov V.M. Variabel’nost’ ritma serdtsa (novyy vzglyad na staruyu paradigmu) [Heart Rate Variability (New Look at the Old Paradigm)]. Ivanovo, 2017. 516 p.
  6. Khodyrev G.N., Khlybova S.V., Tsirkin V.I., Dmitrieva S.L. Metodicheskie aspekty analiza vremennykh i spektral’nykh pokazateley variabel’nosti serdechnogo ritma (obzor literatury) [Methodological Aspects of Analysis of Temporal and Spectral Parameters of Heart Rate Variability (Review)]. Vyatskiy meditsinskiy vestnik, 2011, no. 3-4, pp. 60–70.
  7. Perek S., Raz-Pasteur A. Heart Rate Variability: The Age-Old Tool Still Remains Current. Harefuah, 2021, vol. 160, no. 8, pp. 533–536.
  8. Pham T., Lau Z.J., Chen S.H.A., Makowski D. Heart Rate Variability in Psychology: A Review of HRV Indices and an Analysis Tutorial. Sensors (Basel), 2021, vol. 21, no. 12. Art. no. 3998. DOI: 10.3390/s21123998
  9. Kotel’nikov S.A., Nozdrachev A.D., Odinak M.M., Shustov E.B., Kovalenko I.Yu., Davydenko V.Yu. Cardiac Rhythm Variability: Approaches to Mechanisms. Hum. Physiol., 2002, vol. 28, no. 1, pp. 114–127.
  10. Litvin F.B., Anosov I.P., Asyamolov P.O., Vasil’eva G.V., Martynov S.V., Zhigalo V.Ya. Serdechnyy ritm i sistema mikrotsirkulyatsii u lyzhnikov v predsorevnovatel’nom periode sportivnoy podgotovki [Heart Rhythm and Microcirculation System in Skiers During the Precompetition Period of Sports Training]. Vestnik Udmurtskogo universiteta. Ser.: Biologiya. Nauki o zemle, 2012, no. 1, pp. 67–74.
  11. Takabatake N., Nakamura H., Minamihaba O., Inage M., Inoue S., Kagaya S., Yamaki M., Tomoike H. A Novel Pathophysiological Phenomenon in Cachexic Patient with Chronic Obstructive Pulmonary Disease: The Relationship Between the Circadian Rhythm of Circulating Leptin and the Very Low-Frequency Component of Heart Rate Variability. Am. J. Respir. Crit. Care Med., 2001, vol. 163, no. 6, pp. 1314–1319. DOI: 10.1164/ajrccm.163.6.2004175
  12. Voronina G.A., Efremova R.I. Osobennosti variabel’nosti serdechnogo ritma yunykh lyzhnikov v zavisimosti ot perioda sportivnoy podgotovki [Heart Rate Variability in Young Skiers Depending on the Period of Sports Training]. Baevskiy R.M., Shlyk N.I. (eds.). Variabel’nost’ serdechnogo ritma: teoreticheskie aspekty i prakticheskoe primenenie [Heart Rate Variability: Theoretical Background and Practical Application]. Izhevsk, 2011, pp. 235–238.
  13. Huang J.-C., Kuo I.-C., Tsai Y.-C., Lee J.-J., Lim L.-M., Chen S.-C., Chiu Y.-W., Chang J.-M., Chen H.-H. Heart Rate Variability Predicts Major Adverse Cardiovascular Events and Hospitalization in Maintenance Hemodialysis Patients. Kidney Blood Press. Res., 2017, vol. 42, no. 1, pp. 76–88. DOI: 10.1159/000469716
  14. Javorka K., Javorková J., Petrásková M., Tonhajzerová I., Buchanec J., Chroma O. Heart Rate Variability and Cardiovascular Tests in Young Patients with Diabetes Mellitus Type 1. J. Pediatr. Endocrinol. Metab., 1999, vol. 12, no. 3, pp. 423–431. DOI: 10.1515/jpem.1999.12.3.423
  15. Kudrya O.N. Vliyanie fizicheskikh nagruzok raznoy napravlennosti na variabel’nost’ ritma serdtsa u sportsmenov [The Influence of the Different Direction Physical Tensions for Heart Rate Variability of the Sportsmen]. Byulleten’ sibirskoy meditsiny, 2009, vol. 8, no. 1, pp. 36–43.
  16. Vikulov A.D., Nemirov A.D., Larionov E.L., Shevchenko A.Yu. Heart Rate Variability in Subjects with Increased Motor Activity and Athletes. Hum. Physiol., 2005, vol. 31, no. 6, pp. 666–671.
  17. Gushturova I.V., Makarov A.L. Osobennosti variabel’nosti serdechnogo ritma i tsentral’noy gemodinamiki u sportsmenok legkoatletok v predsorevnovatel’nom periode [Heart Rate Variability and Central Haemodynamics in Female Athletes During the Precompetition Period]. Baevskiy R.M., Shlyk N.I. (eds.). Variabel’nost’ serdechnogo ritma: teoreticheskie aspekty i prakticheskoe primenenie [Heart Rate Variability: Theoretical Background and Practical Application]. Izhevsk, 2011, pp. 244–248.
  18. Bersnev E.Yu. Sportivnaya spetsializatsiya i osobennosti vegetativnoy regulyatsii serdechnogo ritma [Sports Specialization and Features of the Autonomic Regulation of Heart Rhythm]. Baevskiy R.M., Shlyk N.I. (eds.). Variabel’nost’ serdechnogo ritma: teoreticheskie aspekty i prakticheskoe primenenie [Heart Rate Variability: Theoretical Background and Practical Application]. Izhevsk, 2008, pp. 42–45.
  19. Drattsev E.Yu., Vikulov A.D., Turchaninov S.Yu., Alekhin V.V. Regulyatsiya serdechnoy deyatel’nosti i regional’nyy krovotok u sportsmenov [Cardiac Activity Regulation and Regional Blood Flow in Athletes]. Baevskiy R.M., Shlyk N.I. (eds.). Variabel’nost’ serdechnogo ritma: teoreticheskie aspekty i prakticheskoe primenenie [Heart Rate Variability: Theoretical Background and Practical Application]. Izhevsk, 2008, pp. 93–97.
  20. Shlyk N.I. Analiz variabel’nosti serdechnogo ritma pri ortostaticheskoy probe u sportsmenov s raznymi preobladayushchimi tipami vegetativnoy regulyatsii v trenirovochnom protsesse [Analysis of Heart Rate Variability During an Orthostatic Test in Athletes with Different Prevailing Types of Autonomic Regulation in the Training Process]. Baevskiy R.M., Shlyk N.I. (eds.). Variabel’nost’ serdechnogo ritma: teoreticheskie aspekty i prakticheskoe primenenie [Heart Rate Variability: Theoretical Background and Practical Application]. Izhevsk, 2011, pp. 348–369.
  21. Markov A.L. Heart Rate Variability in Cross-Country Skiers Aged 15–18 Years Living in the Komi Republic: Age-and Sex-Related Differences. J. Med. Biol. Res., 2019, vol. 7, no. 2, pp. 151–160. DOI: 10.17238/issn2542-1298.2019.7.2.151
  22. Shlyk N.I., Sapozhnikova E.N., Kirillova T.G., Zhuzhgov A.P. Ob osobennostyakh ortostaticheskoy reaktsii u sportsmenov s raznymi tipami vegetativnoy regulyatsii [Orthostatic Response in Athletes with Different Types of Autonomic Regulation]. Vestnik Udmurtskogo universiteta. Ser.: Biologiya. Nauki o zemle, 2012, no. 1, pp. 114–125.
  23. Zhigalo V.Ya. Issledovanie funktsional’nogo sostoyaniya futbolistov-sportsmenov razlichnogo vozrasta [Study of the Functional State of Football Players of Different Ages]. Shlyk N.I. (ed.). Variabel’nost’ serdechnogo ritma: teoreticheskie aspekty i prakticheskoe primenenie v sporte i massovoy fizkul’ture [Heart Rate Variability: Theoretical Background and Practical Application in Sports and Mass Culture]. Izhevsk, 2021, pp. 144–148.
  24. Fazackerley L.A., Fell J.W., Kitic C.M. The Effect of an Ultra-Endurance Running Race on Heart Rate Variability. Eur. J. Appl. Physiol., 2019, vol. 119, no. 9, pp. 2001–2009. DOI: 10.1007/s00421-019-04187-6
  25. Saw E.L., Kakinuma Y., Fronius M., Katare R. The Non-Neuronal Cholinergic System in the Heart: A Comprehensive Review. J. Mol. Cell. Cardiol., 2018, vol. 125, pp. 129–139. DOI: 10.1016/j.yjmcc.2018.10.013
  26. Kakinuma Y. Characteristic Effects of the Cardiac Non-Neuronal Acetylcholine System Augmentation on Brain Functions. Int. J. Mol. Sci., 2021, vol. 22, no. 2. Art. no. 545. DOI: 10.3390/ijms22020545
  27. Bader S., Klein J., Diener M. Choline Acetyltransferase and Organic Cation Transporters Are Responsible for Synthesis and Propionate-Induced Release of Acetylcholine in Colon Epithelium. Eur. J. Pharmacol., 2014, vol. 733, pp. 23–33. DOI: 10.1016/j.ejphar.2014.03.036
  28. Kučera M., Hrabovská A. Cholinergic System of the Heart. Ceska Slov. Farm., 2015, vol. 64, no. 6, pp. 254–263.
  29. D’Souza A., Sharma S., Boyett M.R. CrossTalk Opposing View: Bradycardia in the Trained Athlete Is Attributable to a Downregulation of a Pacemaker Channel in the Sinus Node. J. Physiol., 2015, vol. 593, no. 8, pp. 1749–1751. DOI: 10.1113/jphysiol.2014.284356
  30. Roy A., Guatimosim S., Prado V.F., Gros R., Prado M.A.M. Cholinergic Activity as a New Target in Diseases of the Heart. Mol. Med., 2015, vol. 20, no. 1, pp. 527–537. DOI: 10.2119/molmed.2014.00125
  31. Tsirkin V.I., Trukhin A.N., Trukhina S.I. Kholini monoaminergicheskie transmitternye sistemy v norme i patologii [Cholinergic and Monoaminergic Transmitter Systems in Health and Disease]. Kirov, 2020. 296 p.
  32. Cheng A.J., Jude B., Lanner J.T. Intramuscular Mechanisms of Overtraining. Redox Biol., 2020, vol. 35. Art. no. 101480. DOI: 10.1016/j.redox.2020.101480
  33. Mesquita P.H.C., Vann C.G., Phillips S.M., McKendry J., Young K.C., Kavazis A.N., Roberts M.D. Skeletal Muscle Ribosome and Mitochondrial Biogenesis in Response to Different Exercise Training Modalities. Front. Physiol., 2021, vol. 12. Art. no. 725866. DOI: 10.3389/fphys.2021.725866



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