Int J Sports Med 2008; 29(8): 646-651
DOI: 10.1055/s-2007-989373
Training & Testing

© Georg Thieme Verlag KG Stuttgart · New York

Heart Rate Responses at Onset of Contraction

T. Hachiya1 , A. P. Blaber1 , S. Aizawa2 , M. Saito2
  • 1Kinesiology, Simon Fraser University, Burnaby, Canada
  • 2Applied Physiology, Toyota Technological Institute, Nagoya, Japan
Further Information

Publication History

accepted after revision October 18, 2007

Publication Date:
17 December 2007 (online)

Abstract

We tested the hypothesis that the initial heart rate (HR) response at the onset of maximal handgrip contraction is altered after training. 17 volunteers (nine trained and eight controls) performed ten intermittent static handgrip contractions with maximal effort, alternating between 15-s contractions and 15-s pauses. High-intensity static handgrip training was performed using the nondominant arm alone for 4 weeks. Handgrip force (HGF) and HR were analyzed for the initial 7 s of every static handgrip exercise. Peak HR (pre-training: 94.5 ± 12.8 beats/min; post-training: 89.7 ± 10.2 beats/min, p < 0.05) decreased. However, the magnitude of HR change at the onset of contraction remained constant (pre-training: 23.0 ± 7.7 beats/min; post-training: 25.7 ± 6.5 beats/min, p = 0.0767), while the HR responses in the subsequent bouts increased after training (p < 0.001). The resting HR decreased (pre-training: 71.5 ± 9.3 beats/min; post-training 64.1 ± 5.7 beats/min, p < 0.05). Maximal HGF increased by 11.1 % in trained arms and by 8.7 % in untrained arms, although an increase in maximal forearm girth was only observed in the trained arm (2.0 %, p < 0.0001). Although high-intensity training modulated the abrupt HR responses, the magnitude of the response remained unchanged at the onset of maximal forearm contraction and the resting HR significantly decreased.

References

  • 1 Aagaard P, Simonsen E B, Andersen J L, Magnusson P, Dyhre-Poulsen P. Increased rate of force development and neural drive of human skeletal muscle following resistance training.  J Appl Physiol. 2002;  93 1318-1326
  • 2 Al-Ani M, Munir S M, White M, Townend J, Coote J H. Changes in R‐R variability before and after endurance training measured by power spectral analysis and by the effect of isometric muscle contraction.  Eur J Appl Physiol. 1996;  74 397-403
  • 3 Bigland-Ritchie B, Jones D A, Hosking G P, Edwards R HT. Central and peripheral fatigue in sustained maximum voluntary contractions of human quadriceps muscle.  Clin Sci Mol Med. 1978;  54 609-614
  • 4 Bigland-Ritchie B, Furbush F, Woods J J. Fatigue of intermittent submaximal voluntary contractions: central and peripheral factors.  J Appl Physiol. 1986;  61 421-429
  • 5 Borst C, Wieling W, van Brederode J F, Hond A, de Rijk L G, Dunning A J. Mechanisms of initial heart rate response to postural change.  Am J Physiol. 1982;  243 H676-H681
  • 6 Carrington C A, Fisher W, White M J. The effects of athletic training and muscle contractile character on the pressor response to isometric exercise of the human triceps surae.  Eur J Appl Physiol. 1999;  80 337-343
  • 7 Fisher W J, White M J. Training-induced adaptation in the central command and peripheral reflex components of the pressor response to isometric exercise of the human triceps surae.  J Physiol. 1999;  520 621-628
  • 8 Freyschuss U. Cardiovascular adjustment to somatomotor activation.  Acta Physiol Scand Suppl. 1970;  342 1-63
  • 9 Friedman D B, Jensen F B, Mitchel J H, Secher N H. Heart rate and arterial blood pressure at the onset of static exercise in man with complete neural blockade.  J Physiol. 1990;  423 543-550
  • 10 Gandevia S C, Hobbs S F. Cardiovascular responses to static exercise in man: central and reflex contribution.  J Physiol. 1990;  430 105-117
  • 11 Gladwell V F, Coote J H. Heart rate at the onset of muscle contraction and during passive muscle stretch in humans: a role for mechanoreceptors.  J Physiol. 2002;  540 1095-1102
  • 12 Hakkinen K, Komi P V. Electromyographic changes during strength training and detraining.  Med Sci Sports Exerc. 1983;  15 455-460
  • 13 Hollander A P, Bouman L N. Cardiac acceleration in man elicited by a muscle-heart reflex.  J Appl Physiol. 1975;  38 272-278
  • 14 Kluess A K, Wood R H, Welsch M A. Vagal modulation of the heart and central hemodynamics during handgrip exercise.  Am J Physiol. 2000;  279 H1648-H1652
  • 15 Lewis S, Nygaard E, Sanchez J, Egebland H, Saltin B. Static contraction of the quadriceps muscle in man: cardiovascular control and responses to one-legged strength training.  Acta Physiol Scand. 1984;  122 341-353
  • 16 Matsukawa K, Wall P T, Wilson L B, Mitchell J H. Reflex responses of renal nerve activity during isometric muscle contraction in cat.  Am J Physiol. 1990;  259 H1380-H1388
  • 17 Matsukawa K, Wall P T, Wilson L B, Mitchell J H. Reflex stimulation of cardiac sympathetic nerve activity during static muscle contraction in cats.  Am J Physiol. 1994;  267 H821-H827
  • 18 McCartney N, McKelvie R S, Martin J, Sale D G, MacDougall J D. Weight-training-induced attenuation of the circulatory response of older males to weight lifting.  J Appl Physiol. 1993;  74 1056-1060
  • 19 McMahon S E, Mcwilliam P N. Changes in R‐R interval at the start of muscle contraction in the decerebrate cat.  J Physiol. 1992;  447 549-562
  • 20 Moritani T, DeVries H. Neural factors versus hypertrophy in the time course of muscle strength gain.  Am J Phys Med. 1979;  58 115-130
  • 21 Mostoufi-Moab S, Widmaier E J, Cornett J A, Gray K, Sinoway L I. Forearm training reduces the exercise pressure reflex during ischemic rhythmic handgrip.  J Appl Physiol. 1998;  84 277-283
  • 22 Murata J, Matsukawa K. Cardiac vagal and sympathetic efferent discharges are differentially modified by stretch of skeletal muscle.  Am J Physiol. 2001;  280 H237-H245
  • 23 Narici M V, Roi G S, Landoni L, Minetti A E, Cerretelli P. Changes in force, cross-sectional area and neural activation during strength training and detraining of the human quadriceps.  Eur J Appl Physiol. 1989;  59 310-319
  • 24 Nobrega A C, Williamson J W, Friedman D B, Araujo C G, Mitchell J H. Cardiovascular responses to active and passive cycling movements.  Med Sci Sports Exerc. 1994;  26 709-714
  • 25 Patrick B T, Caterisano A. Hemodynamic adjustments to circulatory arrest during and following isometric handgrip in resistance trained and untrained men.  J Sports Med Phys Fitness. 2005;  45 393-400
  • 26 Ray C A, Carrasco D I. Isometric handgrip training reduces arterial pressure at rest without changes in sympathetic nerve activity.  Am J Physiol. 2000;  279 H245-H249
  • 27 Rowell L B. Human Cardiovascular Control. New York; Oxford University Press 1993
  • 28 Sabatier M J, Stoner L, Mahoney E T, Black C, Elder C, Dudley G A, McCully K. Electrically stimulated resistance training in SCI individuals increases muscle fatigue resistance but not femoral artery size or blood flow.  Spinal Cord. 2006;  44 227-233
  • 29 Sale D G. Neural adaptation to resistance training.  Med Sci Sports Exerc. 1988;  20 S135-S145
  • 30 Sato A, Sato Y, Schmidt R F. Heart rate changes reflecting modifications of efferent cardiac sympathetic outflow by cutaneous and muscle afferent volleys.  J Auto Nerv Syst. 1981;  4 231-247
  • 31 Schibye B, Mitchell J H, Payne F CIII, Saltin B. Blood pressure and heart rate response to static exercise in relation to electromyographic activity and force development.  Acta Physiol Scand. 1981;  113 61-66
  • 32 Somers V K, Leo K C, Shields R, Clary M, Mark A L. Forearm endurance training attenuates sympathetic nerve response to isometric handgrip in normal humans.  J Appl Physiol. 1992;  72 1039-1043
  • 33 Williamson J W, Nobrega A CL, Winchester P K, Zim S, Mitchell J H. Instantaneous heart rate increase with dynamic exercise: central command and muscle heart reflex contributions.  J Appl Physiol. 1985;  78 1273-1278
  • 34 Wissler C, Richardson W W. Diffusion of motor impulse.  Psychol Rev. 1900;  7 29-38

Dr. Tesshin Hachiya

Simon Fraser University
Kinesiology

8888 University Drive

V5A 1S6 Burnaby

Canada

Phone: + 77 87 82 32 76

Fax: + 77 87 82 30 40

Email: thachiya@hotmail.com

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