Int J Sports Med 2008; 29(8): 652-657
DOI: 10.1055/s-2007-989423
Training & Testing

© Georg Thieme Verlag KG Stuttgart · New York

Use of Heart Rate Variability to Estimate LT and VT

G. K. Karapetian1 , H. J. Engels1 , R. J. Gretebeck1
  • 1Kinesiology, Health & Sport Studies, Wayne State University, Detroit, Michigan, USA
Further Information

Publication History

accepted after revision October 30, 2007

Publication Date:
22 January 2008 (online)

Abstract

The purpose of this study was to determine if changes in heart rate variability during incremental exercise could be used to estimate lactate threshold and ventilatory threshold in healthy adults. Twenty-four adults performed graded maximal cycle ergometry to volitional fatigue. Blood lactate, heart rate, RR interval, and respiratory gas exchange were monitored. Heart rate variability was analyzed using time domain indices (standard deviation and mean successive difference). A marked RR interval deflection point was found in the region of lactate threshold and ventilatory threshold, and was identified as the heart rate variability threshold. Mean differences between heart rate variability threshold, ventilatory threshold, and lactate threshold ranged from 0.06 ± 0.3 to 0.12 ± 0.2 L · min−1. Correlations between the different measures ranged from 0.82 – 0.89. A small but significant difference was found between ventilatory threshold and lactate threshold (p < 0.05). There was not a significant difference between heart rate variability threshold and lactate threshold (p > 0.05), nor between heart rate variability threshold and ventilatory threshold (p > 0.05). The data suggest the heart rate variability threshold coincides with lactate threshold and ventilatory threshold during graded exercise and can be used for the detection of lactate threshold in healthy adults.

References

  • 1 Alonso O, Forjaz C L, Rezende L O, Braga A M, Barretto A C, Negrao C E, Rondon M U. Heart rate response and its variability during different phases of maximal graded exercise.  Arq Bras Cardiol. 1998;  71 787-792
  • 2 Anosov O, Patzak A, Kononovich Y, Persson P B. High-frequency oscillations of the heart rate during ramp load reflect the human anaerobic threshold.  Eur J Appl Physiol. 2000;  83 388-394
  • 3 Aunola S, Rusko H. Aerobic and anaerobic thresholds determined from venous lactate or from ventilation and gas exchange in relation to muscle fiber composition.  Int J Sports Med. 1986;  7 161-166
  • 4 Beaver W L, Wasserman K, Whipp B J. A new method for detecting anaerobic threshold by gas exchange.  J Appl Physiol. 1986;  60 2020-2027
  • 5 Berry M J, Stoneman J V, Weyrich A S, Burney B. Dissociation of the ventilatory and lactate thresholds following caffeine ingestion.  Med Sci Sports Exerc. 1991;  23 463-469
  • 6 Blain G, Meste O, Bermon S. Influences of breathing patterns on respiratory sinus arrhythmia during exercise.  Am J Physiol. 2005;  288 H887-H895
  • 7 Blain G, Meste O, Bouchard T, Bermon S. Assessment of ventilatory thresholds during graded and maximal exercise test using time varying analysis of respiratory sinus arrhythmia.  Br J Sport Med. 2005;  39 448-452
  • 8 Bland J M, Altman D G. Statistical methods for assessing agreement between two methods of clinical measurement.  Lancet. 1986;  8 307-310
  • 9 Burke J, Thayer R, Belcamino M. Comparison of effects of two interval-training programmes on lactate and ventilatory thresholds.  Br J Sport Med. 1994;  28 18-21
  • 10 Chicharro J L, Perez M, Vaquero A F, Lucia A, Legido J C. Lactic threshold vs. ventilatory threshold during a ramp test on a cycle ergometer.  J Sport Med Phys Fitness. 1997;  37 117-121
  • 11 Chiou C W, Zipes D P. Selective vagal denervation of the atria eliminates heart rate variability and baroreflex sensitivity while preserving ventricular innervation.  Circulation. 1998;  98 360-368
  • 12 Chwalbinska-Moneta J, Robergs R A, Costill D L, Fink W J. Threshold for muscle lactate accumulation during progressive exercise.  J Appl Physiol. 1989;  66 2710-2716
  • 13 Clark J M, Hagerman F C, Gefland R. Breathing patterns during submaximal and maximal exercise in elite oarsmen.  J Appl Physiol. 1983;  55 440-446
  • 14 Cottin F, Lepretre P M, Lopes P, Papelier Y, Medigue C, Billat V L. Assessment of ventilatory thresholds from heart rate variability in well-trained subjects during cycling.  Int J Sports Med. 2006;  27 959-967
  • 15 Cottin F, Medigue C, Lopes P, Lepretre P M, Heubert R, Billat V L. Ventilatory thresholds assessment from heart rate variability during an incremental exhaustive running test.  Int J Sports Med. 2007;  28 287-294
  • 16 Denis C, Fouquet R, Poty P, Geyssant A, Lacour J R. Effects of 40 weeks of endurance training on the anaerobic threshold.  Int J Sports Med. 1982;  3 208-214
  • 17 Dickhuth H H, Yin L, Niess A, Rocker K, Mayer F, Heitkamp H C, Horstmann T. Ventilatory, lactate-derived and catecholamine thresholds during incremental treadmill running: relationship and reproducibility.  Int J Sports Med. 1999;  20 122-127
  • 18 Malik M, Bigger J T, Camm A J, Kleiger R E, Malliani A, Moss A J, Schwartz P J. Heart rate variability. Standards of measurement, physiological interpretation, and clinical use.  Eur Heart J. 1996;  17 354-381
  • 19 Fields D A, Goran M I, McCrory M A. Body-composition assessment via air-displacement plethysmography in adults and children: a review.  Am J Clin Nutr. 2002;  75 453-467
  • 20 Gaskill B C, Ruby B C, Walker A J, Sanchez O A, Serfass R C, Leon A S. Validity and reliability of combining three methods to determine ventilatory threshold.  Med Sci Sports Exerc. 2001;  33 1841-1849
  • 21 Hayano J, Sakakibara Y, Yamada A, Yamada M, Mukai S, Fujinami T, Yokoyama K, Watanabe Y, Takata K. Accuracy of assessment of cardiac vagal tone by heart rate variability in normal subjects.  Am J Cardiol. 1991;  67 199-204
  • 22 Hoogeveen A R, Schep G. The plasma lactate response to exercise and endurance performance: relationships in elite triathletes.  Int J Sports Med. 1997;  18 526-530
  • 23 Karemaker J M, Lie K I. Heart rate variability: a telltale of health or disease.  Eur Heart J. 2000;  21 435-437
  • 24 Kohl P, Kamkin A G, Kiseleva S, Streubel T. Mechanosensitive cells in the atrium of frog heart.  Exper Physiol. 1992;  77 213-216
  • 25 Koziris L P, Montgomery D L. Blood lactate concentration following intermittent and continuous cycling tests of anaerobic capacity.  Eur J Appl Physiol. 1991;  63 273-277
  • 26 Kristal-Boneh E, Raifel M, Froom P, Ribak J. Heart rate variability in health and disease.  Scand J Work Environ Health. 1995;  21 85-95
  • 27 Myers J, Ashley E. Dangerous curves. A perspective on exercise, lactate, and the anaerobic threshold.  Chest. 1997;  111 787-795
  • 28 Rowell L B. Human Cardiovascular Control. New York; Oxford University Press 1993: 172-175
  • 29 Saltin B, Astrand P O. Maximal oxygen uptake in athletes.  J Appl Physiol. 1967;  23 353-358
  • 30 Shibata M, Moritani T, Miyawaki T, Hayashi T, Nakao K. Exercise prescription based upon cardiac vagal activity for middle-aged obese women.  Int J Obes. 2002;  26 1356-1362
  • 31 Tulppo M P, Makikallio T H, Takala T E, Seppanen T, Huikuri H V. Quantitative beat-to-beat analysis of heart rate dynamics during exercise.  Am J Physiol. 1996;  271 H244-H252
  • 32 Tulppo M P, Makikallo T H, Seppanen T, Laukkanen R T, Huikuri H V. Vagal modulation of heart rate during exercise: effects of age and physical fitness.  Am J Physiol. 1998;  274 H424-H429
  • 33 Warren J H, Jaffe R S, Wraa C E, Stebbins C L. Effect of autonomic blockade on power spectrum of heart rate variability during exercise.  Am J Physiol. 1997;  273 R495-R502
  • 34 Wasserman K, Beaver W, Whip B. Mechanisms and patterns of blood lactate increase during exercise in man.  Med Sci Sports Exerc. 1986;  18 344-352
  • 35 Weltman J, Seip R, Levine S, Snead D, Rogol A, Weltman A. Prediction of lactate threshold and fixed blood lactate concentrations from 3200-m time trial running performances in untrained females.  Int J Sports Med. 1989;  10 207-211

M. S. Gregory K. Karapetian

Wayne State University
Kinesiology, Health & Sport Studies

263 Matthaei Bldg. Wayne State University

Detroit, Michigan 48202

United States

Phone: + 1 31 35 77 62 19

Fax: + 1 31 35 77 93 01

Email: gregorykarapetian@hotmail.com

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