Skip to main content
Top
Published in: European Journal of Applied Physiology 4/2015

01-04-2015 | Original Article

Autonomic modulations of heart rate variability and performances in short-distance elite swimmers

Authors: Giampiero Merati, Martina Anna Maggioni, Pietro Luigi Invernizzi, Claudio Ciapparelli, Luca Agnello, Arsenio Veicsteinas, Paolo Castiglioni

Published in: European Journal of Applied Physiology | Issue 4/2015

Login to get access

Abstract

Purpose

Endurance exercise is associated with high cardiac vagal tone, but how the cardiac autonomic control correlates with shorter anaerobic performances is unknown. Therefore, the aim of this study was to evaluate how autonomic modulations of heart rate (HR) variability (V) correlate with performances of short- (<1 min) and very short (<30 s) duration in elite athletes.

Method

Thirteen male swimmers, national-level crawl specialists in short (100-m) and very short (50-m) distances, were enrolled. HR was recorded during 15-min supine rest: (1) in the morning after wake up, (2) in the afternoon before sprint-oriented training sessions, (3) few minutes after training (first recovery phase after swimming cooldown). Heart rate variability (HRV) vagal and sympatho/vagal indices were calculated in time, frequency and complexity domains. Correlations of best seasonal times on 100- or 50-m distances with HRV indices and the velocity at blood lactate accumulation onset (V OBLA) were calculated.

Results and conclusion

Vagal indices were highest in the morning where they positively correlated with very short-distance times (higher the index, worse is the 50-m performance). Sympatho/vagal indices were highest after training where they negatively correlated with short-distance times (higher the index, better is the 100-m performance). V OBLA did not correlate with the performances. Therefore, autonomic HRV indices and not V OBLA predict short and very short, most anaerobic, performances. Results also suggest that a strong cardiac vagal control has no effect on short performances and is even detrimental to very short performances, and that the capacity to powerfully increase the sympathetic tone during exercise may improve short, but not very short performances.
Literature
go back to reference Arai Y, Saul JP, Albrecht P, Hartley LH, Lilly LS, Cohen RJ, Colucci WS (1989) Modulation of cardiac autonomic activity during and immediately after exercise. Am J Physiol 256:H132–H141PubMed Arai Y, Saul JP, Albrecht P, Hartley LH, Lilly LS, Cohen RJ, Colucci WS (1989) Modulation of cardiac autonomic activity during and immediately after exercise. Am J Physiol 256:H132–H141PubMed
go back to reference Atlaoui D, Pichot V, Lacoste L, Barale F, Lacour JR, Chatard JC (2007) Heart rate variability, training variation and performance in elite swimmers. Int J Sports Med 28:394–400CrossRefPubMed Atlaoui D, Pichot V, Lacoste L, Barale F, Lacour JR, Chatard JC (2007) Heart rate variability, training variation and performance in elite swimmers. Int J Sports Med 28:394–400CrossRefPubMed
go back to reference Bauer A, Kantelhardt JW, Barthel P, Schneider R, Makikallio T, Ulm K, Hnatkova K, Schomig A, Huikuri H, Bunde A, Malik M, Schmidt G (2006) Deceleration capacity of heart rate as a predictor of mortality after myocardial infarction: cohort study. Lancet 367:1674–1681CrossRefPubMed Bauer A, Kantelhardt JW, Barthel P, Schneider R, Makikallio T, Ulm K, Hnatkova K, Schomig A, Huikuri H, Bunde A, Malik M, Schmidt G (2006) Deceleration capacity of heart rate as a predictor of mortality after myocardial infarction: cohort study. Lancet 367:1674–1681CrossRefPubMed
go back to reference Bigger JT Jr, Kleiger RE, Fleiss JL, Rolnitzky LM, Steinman RC, Miller JP (1988) Components of heart rate variability measured during healing of acute myocardial infarction. Am J Cardiol 61:208–215CrossRefPubMed Bigger JT Jr, Kleiger RE, Fleiss JL, Rolnitzky LM, Steinman RC, Miller JP (1988) Components of heart rate variability measured during healing of acute myocardial infarction. Am J Cardiol 61:208–215CrossRefPubMed
go back to reference Bonifazi M, Martelli G, Marugo L, Sardella F, Carli G (1993) Blood lactate accumulation in top level swimmers following competition. J Sports Med Phys Fitness 33:13–18PubMed Bonifazi M, Martelli G, Marugo L, Sardella F, Carli G (1993) Blood lactate accumulation in top level swimmers following competition. J Sports Med Phys Fitness 33:13–18PubMed
go back to reference Bosquet L, Merkari S, Arvisais D, Aubert AE (2008) Is heart rate a convenient tool to monitor over-reaching? A systematic review of the literature. Br J Sports Med 42:709–714CrossRefPubMed Bosquet L, Merkari S, Arvisais D, Aubert AE (2008) Is heart rate a convenient tool to monitor over-reaching? A systematic review of the literature. Br J Sports Med 42:709–714CrossRefPubMed
go back to reference Brennan M, Palaniswami M, Kamen P (2001) Do existing measures of Poincare plot geometry reflect nonlinear features of heart rate variability? IEEE Trans Biomed Eng 48:1342–1347CrossRefPubMed Brennan M, Palaniswami M, Kamen P (2001) Do existing measures of Poincare plot geometry reflect nonlinear features of heart rate variability? IEEE Trans Biomed Eng 48:1342–1347CrossRefPubMed
go back to reference Brennan M, Palaniswami M, Kamen P (2002) Poincare plot interpretation using a physiological model of HRV based on a network of oscillators. Am J Physiol Heart Circ Physiol 283:H1873–H1886CrossRefPubMed Brennan M, Palaniswami M, Kamen P (2002) Poincare plot interpretation using a physiological model of HRV based on a network of oscillators. Am J Physiol Heart Circ Physiol 283:H1873–H1886CrossRefPubMed
go back to reference Castiglioni P, Parati G, Omboni S, Mancia G, Imholz BP, Wesseling KH, Di Rienzo M (1999) Broad-band spectral analysis of 24 h continuous finger blood pressure: comparison with intra-arterial recordings. Clin Sci (Lond) 97:129–139CrossRef Castiglioni P, Parati G, Omboni S, Mancia G, Imholz BP, Wesseling KH, Di Rienzo M (1999) Broad-band spectral analysis of 24 h continuous finger blood pressure: comparison with intra-arterial recordings. Clin Sci (Lond) 97:129–139CrossRef
go back to reference Castiglioni P, Parati G, Civijian A, Quintin L, Di Rienzo M (2009) Local scale exponents of blood pressure and heart rate variability by detrended fluctuation analysis: effects of posture, exercise, and aging. IEEE Trans Biomed Eng 56:675–684CrossRefPubMed Castiglioni P, Parati G, Civijian A, Quintin L, Di Rienzo M (2009) Local scale exponents of blood pressure and heart rate variability by detrended fluctuation analysis: effects of posture, exercise, and aging. IEEE Trans Biomed Eng 56:675–684CrossRefPubMed
go back to reference Castiglioni P, Parati G, Di Rienzo M, Carabalona R, Cividjian A, Quintin L (2011a) Scale exponents of blood pressure and heart rate during autonomic blockade as assessed by detrended fluctuation analysis. J Physiol 589:355–369CrossRefPubMedCentralPubMed Castiglioni P, Parati G, Di Rienzo M, Carabalona R, Cividjian A, Quintin L (2011a) Scale exponents of blood pressure and heart rate during autonomic blockade as assessed by detrended fluctuation analysis. J Physiol 589:355–369CrossRefPubMedCentralPubMed
go back to reference Castiglioni P, Parati G, Lombardi C, Quintin L, Di Rienzo M (2011b) Assessing the fractal structure of heart rate by the temporal spectrum of scale exponents: a new approach for detrended fluctuation analysis of heart rate variability. Biomed Tech (Berl) 56:175–183CrossRef Castiglioni P, Parati G, Lombardi C, Quintin L, Di Rienzo M (2011b) Assessing the fractal structure of heart rate by the temporal spectrum of scale exponents: a new approach for detrended fluctuation analysis of heart rate variability. Biomed Tech (Berl) 56:175–183CrossRef
go back to reference Di Rienzo M, Castiglioni P, Mancia G, Parati G, Pedotti A (1989) 24 h sequential spectral analysis of arterial blood pressure and pulse interval in free-moving subjects. IEEE Trans Biomed Eng 36:1066–1075CrossRefPubMed Di Rienzo M, Castiglioni P, Mancia G, Parati G, Pedotti A (1989) 24 h sequential spectral analysis of arterial blood pressure and pulse interval in free-moving subjects. IEEE Trans Biomed Eng 36:1066–1075CrossRefPubMed
go back to reference Dixon EM, Kamath MV, McCartney N, Fallen EL (1992) Neural regulation of heart rate variability in endurance athletes and sedentary controls. Cardiovasc Res 26:713–719CrossRefPubMed Dixon EM, Kamath MV, McCartney N, Fallen EL (1992) Neural regulation of heart rate variability in endurance athletes and sedentary controls. Cardiovasc Res 26:713–719CrossRefPubMed
go back to reference Ekblom B, Kilbom A, Soltysiak J (1973) Physical training, bradycardia, and autonomic nervous system. Scand J Clin Lab Invest 32:251–256CrossRefPubMed Ekblom B, Kilbom A, Soltysiak J (1973) Physical training, bradycardia, and autonomic nervous system. Scand J Clin Lab Invest 32:251–256CrossRefPubMed
go back to reference Ewing DJ, Neilson JM, Travis P (1984) New method for assessing cardiac parasympathetic activity using 24 hour electrocardiograms. Br Heart J 52:396–402CrossRefPubMedCentralPubMed Ewing DJ, Neilson JM, Travis P (1984) New method for assessing cardiac parasympathetic activity using 24 hour electrocardiograms. Br Heart J 52:396–402CrossRefPubMedCentralPubMed
go back to reference Faude O, Meyer T, Scharhag J, Weins F, Urhausen A, Kindermann W (2008) Volume vs. intensity in the training of competitive swimmers. Int J Sports Med 29:906–912CrossRefPubMed Faude O, Meyer T, Scharhag J, Weins F, Urhausen A, Kindermann W (2008) Volume vs. intensity in the training of competitive swimmers. Int J Sports Med 29:906–912CrossRefPubMed
go back to reference Furlan R, Piazza S, Dell’Orto S, Gentile E, Cerutti S, Pagani M, Malliani A (1993) Early and late effects of exercise and athletic training on neural mechanisms controlling heart rate. Cardiovasc Res 27:482–488CrossRefPubMed Furlan R, Piazza S, Dell’Orto S, Gentile E, Cerutti S, Pagani M, Malliani A (1993) Early and late effects of exercise and athletic training on neural mechanisms controlling heart rate. Cardiovasc Res 27:482–488CrossRefPubMed
go back to reference Garet M, Tournaire N, Roche F, Laurent R, Lacour JR, Barthelemy JC, Pichot V (2004) Individual Interdependence between nocturnal ANS activity and performance in swimmers. Med Sci Sports Exerc 36:2112–2118CrossRefPubMed Garet M, Tournaire N, Roche F, Laurent R, Lacour JR, Barthelemy JC, Pichot V (2004) Individual Interdependence between nocturnal ANS activity and performance in swimmers. Med Sci Sports Exerc 36:2112–2118CrossRefPubMed
go back to reference Goldsmith RL, Bigger JT Jr, Bloomfield DM, Steinman RC (1997) Physical fitness as a determinant of vagal modulation. Med Sci Sports Exerc 29:812–817CrossRefPubMed Goldsmith RL, Bigger JT Jr, Bloomfield DM, Steinman RC (1997) Physical fitness as a determinant of vagal modulation. Med Sci Sports Exerc 29:812–817CrossRefPubMed
go back to reference Iellamo F, Legramante JM, Pigozzi F, Spataro A, Norbiato G, Lucini D, Pagani M (2002) Conversion from vagal to sympathetic predominance with strenuous training in high-performance world class athletes. Circulation 105:2719–2724CrossRefPubMed Iellamo F, Legramante JM, Pigozzi F, Spataro A, Norbiato G, Lucini D, Pagani M (2002) Conversion from vagal to sympathetic predominance with strenuous training in high-performance world class athletes. Circulation 105:2719–2724CrossRefPubMed
go back to reference Kasikcioglu E (2011) The incognita of the known: the athlete’s heart syndrome. Anadolu Kardiyol Derg 11:351–359PubMed Kasikcioglu E (2011) The incognita of the known: the athlete’s heart syndrome. Anadolu Kardiyol Derg 11:351–359PubMed
go back to reference Laursen PB (2010) Training for intense exercise performance: high-intensity or high-volume training? Scand J Med Sci Sports 20(Suppl 2):1–10CrossRefPubMed Laursen PB (2010) Training for intense exercise performance: high-intensity or high-volume training? Scand J Med Sci Sports 20(Suppl 2):1–10CrossRefPubMed
go back to reference McNarry MA, Lewis MJ (2012) Interaction between age and aerobic fitness in determining heart rate dynamics. Physiol Meas 33:901–914CrossRefPubMed McNarry MA, Lewis MJ (2012) Interaction between age and aerobic fitness in determining heart rate dynamics. Physiol Meas 33:901–914CrossRefPubMed
go back to reference Nobrega AC, O’Leary D, Silva BM, Marongiu E, Piepoli MF, Crisafulli A (2014) Neural regulation of cardiovascular response to exercise: role of central command and peripheral afferents. Biomed Res Int 2014:478965CrossRefPubMedCentralPubMed Nobrega AC, O’Leary D, Silva BM, Marongiu E, Piepoli MF, Crisafulli A (2014) Neural regulation of cardiovascular response to exercise: role of central command and peripheral afferents. Biomed Res Int 2014:478965CrossRefPubMedCentralPubMed
go back to reference Peng CK, Havlin S, Hausdorff JM, Mietus JE, Stanley HE, Goldberger AL (1995) Fractal mechanisms and heart rate dynamics. Long-range correlations and their breakdown with disease. J Electrocardiol 28:59–65CrossRefPubMed Peng CK, Havlin S, Hausdorff JM, Mietus JE, Stanley HE, Goldberger AL (1995) Fractal mechanisms and heart rate dynamics. Long-range correlations and their breakdown with disease. J Electrocardiol 28:59–65CrossRefPubMed
go back to reference Penttila J, Helminen A, Jartti T, Kuusela T, Huikuri HV, Tulppo MP, Coffeng R, Scheinin H (2001) Time domain, geometrical and frequency domain analysis of cardiac vagal outflow: effects of various respiratory patterns. Clin Physiol 21:365–376CrossRefPubMed Penttila J, Helminen A, Jartti T, Kuusela T, Huikuri HV, Tulppo MP, Coffeng R, Scheinin H (2001) Time domain, geometrical and frequency domain analysis of cardiac vagal outflow: effects of various respiratory patterns. Clin Physiol 21:365–376CrossRefPubMed
go back to reference Pichot V, Roche F, Gaspoz JM, Enjolras F, Antoniadis A, Minini P, Costes F, Busso T, Lacour JR, Barthelemy JC (2000) Relation between heart rate variability and training load in middle-distance runners. Med Sci Sports Exerc 32:1729–1736CrossRefPubMed Pichot V, Roche F, Gaspoz JM, Enjolras F, Antoniadis A, Minini P, Costes F, Busso T, Lacour JR, Barthelemy JC (2000) Relation between heart rate variability and training load in middle-distance runners. Med Sci Sports Exerc 32:1729–1736CrossRefPubMed
go back to reference Porta A, Gnecchi-Ruscone T, Tobaldini E, Guzzetti S, Furlan R, Montano N (2007) Progressive decrease of heart period variability entropy-based complexity during graded head-up tilt. J Appl Physiol 103:1143–1149CrossRefPubMed Porta A, Gnecchi-Ruscone T, Tobaldini E, Guzzetti S, Furlan R, Montano N (2007) Progressive decrease of heart period variability entropy-based complexity during graded head-up tilt. J Appl Physiol 103:1143–1149CrossRefPubMed
go back to reference Porta A, Casali KR, Casali AG, Gnecchi-Ruscone T, Tobaldini E, Montano N, Lange S, Geue D, Cysarz D, Van Leeuwen P (2008) Temporal asymmetries of short-term heart period variability are linked to autonomic regulation. Am J Physiol Regul Integr Comp Physiol 295:R550–R557CrossRefPubMed Porta A, Casali KR, Casali AG, Gnecchi-Ruscone T, Tobaldini E, Montano N, Lange S, Geue D, Cysarz D, Van Leeuwen P (2008) Temporal asymmetries of short-term heart period variability are linked to autonomic regulation. Am J Physiol Regul Integr Comp Physiol 295:R550–R557CrossRefPubMed
go back to reference Pu Y, Patterson RP (2003) Comparison of R-wave detection errors of four wireless heart rate belts in the presence of noise. Physiol Meas 24:913–924CrossRefPubMed Pu Y, Patterson RP (2003) Comparison of R-wave detection errors of four wireless heart rate belts in the presence of noise. Physiol Meas 24:913–924CrossRefPubMed
go back to reference Richman JS, Moorman JR (2000) Physiological time-series analysis using approximate entropy and sample entropy. Am J Physiol Heart Circ Physiol 278:H2039–H2049PubMed Richman JS, Moorman JR (2000) Physiological time-series analysis using approximate entropy and sample entropy. Am J Physiol Heart Circ Physiol 278:H2039–H2049PubMed
go back to reference Schmitt L, Hellard P, Millet GP, Roels B, Richalet JP, Fouillot JP (2006) Heart rate variability and performance at two different altitudes in well-trained swimmers. Int J Sports Med 27:226–231CrossRefPubMed Schmitt L, Hellard P, Millet GP, Roels B, Richalet JP, Fouillot JP (2006) Heart rate variability and performance at two different altitudes in well-trained swimmers. Int J Sports Med 27:226–231CrossRefPubMed
go back to reference Shiotani H, Umegaki Y, Tanaka M, Kimura M, Ando H (2009) Effects of aerobic exercise on the circadian rhythm of heart rate and blood pressure. Chronobiol Int 26:1636–1646CrossRefPubMed Shiotani H, Umegaki Y, Tanaka M, Kimura M, Ando H (2009) Effects of aerobic exercise on the circadian rhythm of heart rate and blood pressure. Chronobiol Int 26:1636–1646CrossRefPubMed
go back to reference Tarvainen MP & Niskanen JP (2012). Kubios HRV 2.1 User’s Guide, University of Eastern Finland, Kuopio, Finland Tarvainen MP & Niskanen JP (2012). Kubios HRV 2.1 User’s Guide, University of Eastern Finland, Kuopio, Finland
go back to reference Task Force of the European Society of Cardiology and the North American Society of Pacing and Electrophysiology (1996) Heart rate variability: standards of measurement, physiological interpretation and clinical use. Circulation 93:1043–1065CrossRef Task Force of the European Society of Cardiology and the North American Society of Pacing and Electrophysiology (1996) Heart rate variability: standards of measurement, physiological interpretation and clinical use. Circulation 93:1043–1065CrossRef
go back to reference Tulppo MP, Makikallio TH, Seppanen T, Shoemaker K, Tutungi E, Hughson RL, Huikuri HV (2001) Effects of pharmacological adrenergic and vagal modulation on fractal heart rate dynamics. Clin Physiol 21:515–523CrossRefPubMed Tulppo MP, Makikallio TH, Seppanen T, Shoemaker K, Tutungi E, Hughson RL, Huikuri HV (2001) Effects of pharmacological adrenergic and vagal modulation on fractal heart rate dynamics. Clin Physiol 21:515–523CrossRefPubMed
go back to reference Wilhelm M, Roten L, Tanner H, Wilhelm I, Schmid JP, Saner H (2011) Atrial remodeling, autonomic tone, and lifetime training hours in nonelite athletes. Am J Cardiol 108:580–585CrossRefPubMed Wilhelm M, Roten L, Tanner H, Wilhelm I, Schmid JP, Saner H (2011) Atrial remodeling, autonomic tone, and lifetime training hours in nonelite athletes. Am J Cardiol 108:580–585CrossRefPubMed
go back to reference Zamparo P, Capelli C, Pendergast D (2011) Energetics of swimming: a historical perspective. Eur J Appl Physiol 111:367–378CrossRefPubMed Zamparo P, Capelli C, Pendergast D (2011) Energetics of swimming: a historical perspective. Eur J Appl Physiol 111:367–378CrossRefPubMed
Metadata
Title
Autonomic modulations of heart rate variability and performances in short-distance elite swimmers
Authors
Giampiero Merati
Martina Anna Maggioni
Pietro Luigi Invernizzi
Claudio Ciapparelli
Luca Agnello
Arsenio Veicsteinas
Paolo Castiglioni
Publication date
01-04-2015
Publisher
Springer Berlin Heidelberg
Published in
European Journal of Applied Physiology / Issue 4/2015
Print ISSN: 1439-6319
Electronic ISSN: 1439-6327
DOI
https://doi.org/10.1007/s00421-014-3064-x

Other articles of this Issue 4/2015

European Journal of Applied Physiology 4/2015 Go to the issue