Stability of Heart Rate at Physiological Thresholds Between Temperate and Heat Stress Environments in Endurance-Trained Males

in International Journal of Sports Physiology and Performance

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Ed Maunder
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Daniel J. Plews
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Fabrice Merien
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Andrew E. Kilding
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Many endurance athletes perform specific blocks of training in hot environments in “heat stress training camps.” It is not known if physiological threshold heart rates measured in temperate conditions are reflective of those under moderate environmental heat stress. A total of 16 endurance-trained cyclists and triathletes performed incremental exercise assessments in 18°C and 35°C (both 60% relative humidity) to determine heart rates at absolute blood lactate and ventilatory thresholds. Heart rate at fixed blood lactate concentrations of 2, 3, and 4 mmol·L−1 and ventilatory thresholds were not significantly different between environments (P > .05), despite significant heat stress-induced reductions in power output of approximately 10% to 17% (P < .05, effect size = 0.65–1.15). The coefficient of variation for heart rate at these blood lactate concentrations (1.4%−2.9%) and ventilatory thresholds (2.3%−2.7%) between conditions was low, with significant strong positive correlations between measurements in the 2 environments (r = .92–.95, P < .05). These data indicate heart rates measured at physiological thresholds in temperate environments are reflective of measurements taken under moderate environmental heat stress. Therefore, endurance athletes embarking on heat stress training camps can use heart rate–based thresholds ascertained in temperate environments to prescribe training under moderate environmental heat stress.

Maunder, Plews, and Kilding are with the Sports Performance Research Inst New Zealand, Auckland University of Technology, Auckland, New Zealand. Merien is with the AUT-Roche Diagnostics Laboratory, School of Science, Faculty of Health and Environmental Sciences, Auckland University of Technology, Auckland, New Zealand.

Maunder (ed.maunder@aut.ac.nz) is corresponding author.
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  • 1.

    Sylta Ø, Tonnessen E, Seiler S. From heart-rate data to training quantification: a comparison of 3 methods of training-intensity analysis. Int J Sports Physiol Perform. 2014;9(1):100107. PubMed ID: 24408353 doi:10.1123/ijspp.2013-0298

    • Crossref
    • PubMed
    • Search Google Scholar
    • Export Citation
  • 2.

    Plews DJ, Laursen PB, Kilding AE, Buchheit M. Heart rate variability and training intensity distribution in elite rowers. Int J Sports Physiol Perform. 2014;9(6):10261032. PubMed ID: 24700160 doi:10.1123/ijspp.2013-0497

    • Crossref
    • PubMed
    • Search Google Scholar
    • Export Citation
  • 3.

    Plews DJ, Laursen PB, Stanley J, Kilding AE, Buchheit M. Training adaptation and heart rate variability in elite endurance athletes: opening the door to effective monitoring. Sports Med. 2013;43(9):773781. doi:10.1007/s40279-013-0071-8

    • Crossref
    • PubMed
    • Search Google Scholar
    • Export Citation
  • 4.

    Maunder E, Kilding AE, Stevens CJ, Plews DJ. Heat stress training camps for endurance sport: a case study of successful monitoring in two Ironman triathletes. Int J Sports Physiol Perform. 2020;15(1):146–150. PubMed ID: 31034306

    • Search Google Scholar
    • Export Citation
  • 5.

    Hawley JA, Lundby C, Cotter JD, Burke LM. Maximizing cellular adaptation to endurance exercise in skeletal muscle. Cell Metab. 2018;27(5):962976. PubMed ID: 29719234 doi:10.1016/j.cmet.2018.04.014

    • Crossref
    • PubMed
    • Search Google Scholar
    • Export Citation
  • 6.

    Febbraio MA, Snow RJ, Hargreaves M, Stathis CG, Martin IK, Carey MF. Muscle metabolism during exercise and heat stress in trained men: effect of acclimation. J Appl Physiol. 1994;76(2):589597. PubMed ID: 8175568 doi:10.1152/jappl.1994.76.2.589

    • Crossref
    • Search Google Scholar
    • Export Citation
  • 7.

    Lorenzo S, Halliwill JR, Sawka MN, Minson CT. Heat acclimation improves exercise performance. J Appl Physiol. 2010;109(4):11401147. PubMed ID: 20724560 doi:10.1152/japplphysiol.00495.2010

    • Crossref
    • Search Google Scholar
    • Export Citation
  • 8.

    Reeve T, Gordon R, Laursen PB, Lee JKW, Tyler CJ. Impairment of cycling capacity in the heat in well-trained endurance athletes after high-intensity short-term heat acclimation [published online ahead of print September 1, 2019]. Int J Sports Physiol Perform, 2019;14(8):10581065. doi:10.1123/ijspp.2018-0537

    • Crossref
    • Search Google Scholar
    • Export Citation
  • 9.

    Armstrong LE, Pumerantz AC, Fiala KA, et al. Human hydration indices: acute and longitudinal reference values. Int J Sport Nutr Exerc Metab. 2010;20(2):145153. PubMed ID: 20479488 doi:10.1123/ijsnem.20.2.145

    • Crossref
    • PubMed
    • Search Google Scholar
    • Export Citation
  • 10.

    Newell J, Higgins D, Madden N, et al. Software for calculating blood lactate endurance markers. J Sports Sci. 2007;25(12):14031409. PubMed ID: 17786693 doi:10.1080/02640410601128922

    • Crossref
    • PubMed
    • Search Google Scholar
    • Export Citation
  • 11.

    Pallarés JG, Morán-Navarro R, Ortega JF, Fernández-Elías VE, Mora-Rodriguez R. Validity and reliability of ventilatory and blood lactate thresholds in well-trained cyclists. PLoS One. 2016;11(9):116. doi:10.1371/journal.pone.0163389

    • Crossref
    • Search Google Scholar
    • Export Citation
  • 12.

    Buchheit M. Monitoring training status with HR measures: do all roads lead to Rome? Front Physiol. 2014;5:73. PubMed ID: 24578692 doi:10.3389/fphys.2014.00073

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