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Does Moderate Altitude Affect VO2max in Acclimatized Mountain Guides?

Reinhard Pühringer1,2, Hannes Gatterer3, Martin Berger4

  • 1Department of Sport Science, University of Innsbruck, Innsbruck, Austria.

High Altitude Medicine & Biology
|December 23, 2021
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Long-term acclimatization may prevent maximal oxygen uptake (VO2max) decline at moderate altitudes for individuals with lower baseline VO2max. Higher fitness levels may still experience negative effects.

Keywords:
acclimatizationaerobic capacityexercisehypoxia

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Area of Science:

  • Sports Medicine
  • Altitude Physiology
  • Exercise Science

Background:

  • Altitude exposure typically reduces maximal oxygen uptake (VO2max), with effects often persisting even after acclimatization.
  • Previous research indicates that highly trained athletes experience more pronounced VO2max reductions at altitude compared to non-athletes.
  • The impact of moderate altitude on VO2max in well-acclimatized individuals, such as mountain guides, remains less understood.

Purpose of the Study:

  • To investigate whether acute exposure to moderate altitude (2,000m) affects VO2max in acclimatized mountain guides.
  • To determine if baseline fitness levels influence the preservation of VO2max at moderate altitude.
  • To assess physiological responses, including heart rate and lactate levels, during submaximal exercise at moderate altitude.

Main Methods:

  • 128 acclimatized male mountain guides performed two incremental cycle ergometer tests one week apart.
  • Tests were conducted at low altitude (600m) and moderate altitude (2,000m).
  • Measurements included oxygen uptake, heart rate, and blood lactate concentration.

Main Results:

  • Lower baseline VO2max was associated with better VO2max preservation at 2,000m compared to higher baseline VO2max levels.
  • Physiological responses (heart rate and blood lactate at 100W) at submaximal exercise intensity remained unchanged or slightly decreased at moderate altitude.
  • Individuals with VO2max below the 80th percentile showed preserved VO2max, while those with higher fitness levels experienced potential negative effects.

Conclusions:

  • Long-term acclimatization to moderate altitude can prevent VO2max decline at 2,000m, particularly in less fit individuals.
  • Higher fitness levels may still lead to a negative impact on VO2max at moderate altitudes.
  • Findings are relevant for professionals regularly working at moderate altitudes, including guides, military, and rescue personnel.