Literature DB >> 29220311

Quantifying the effects of acute hypoxic exposure on exercise performance and capacity: A systematic review and meta-regression.

Sanjoy K Deb1, Daniel R Brown1, Lewis A Gough1, Christopher P Mclellan2, Paul A Swinton3, S Andy Sparks1, Lars R Mcnaughton1,4.   

Abstract

OBJECTIVE: To quantify the effects of acute hypoxic exposure on exercise capacity and performance, which includes continuous and intermittent forms of exercise.
DESIGN: A systematic review was conducted with a three-level mixed effects meta-regression. The ratio of means method was used to evaluate main effects and moderators providing practical interpretations with percentage change. DATA SOURCES: A systemic search was performed using three databases (Google scholar, PubMed and SPORTDiscus). Eligibility criteria for selecting studies: Inclusion was restricted to investigations that assessed exercise performance (time trials (TTs), sprint and intermittent exercise tests) and capacity (time to exhaustion test, TTE) with acute hypoxic (<24 h) exposure and a normoxic comparator.
RESULTS: Eighty-two outcomes from 53 studies (N = 798) were included in this review. The results show an overall reduction in exercise performance/capacity -17.8 ± 3.9% (95% CI -22.8% to -11.0%), which was significantly moderated by -6.5 ± 0.9% per 1000 m altitude elevation (95% CI -8.2% to -4.8%) and oxygen saturation (-2.0 ± 0.4%; 95% CI -2.9% to -1.2%). TT (-16.2 ± 4.3%; 95% CI -22.9% to -9%) and TTE (-44.5 ± 6.9%; 95% CI -51.3% to -36.7%) elicited a negative effect, whilst indicating a quadratic relationship between hypoxic magnitude and both TTE and TT performance. Furthermore, exercise less than 2 min exhibited no ergolytic effect from acute hypoxia. Summary/
Conclusion: This review highlights the ergolytic effect of acute hypoxic exposure, which is curvilinear for TTE and TT performance with increasing hypoxic levels, but short duration intermittent and sprint exercise seem to be unaffected.

Entities:  

Keywords:  Altitude; environmental physiology; extreme environments; intermittent hypoxic training

Mesh:

Substances:

Year:  2017        PMID: 29220311     DOI: 10.1080/17461391.2017.1410233

Source DB:  PubMed          Journal:  Eur J Sport Sci        ISSN: 1536-7290            Impact factor:   4.050


  5 in total

Review 1.  Exogenous Ketone Supplements in Athletic Contexts: Past, Present, and Future.

Authors:  Mark Evans; Tyler S McClure; Andrew P Koutnik; Brendan Egan
Journal:  Sports Med       Date:  2022-10-10       Impact factor: 11.928

Review 2.  The effects of environmental hypoxia on substrate utilisation during exercise: a meta-analysis.

Authors:  Alex Griffiths; Oliver M Shannon; Jamie Matu; Roderick King; Kevin Deighton; John P O'Hara
Journal:  J Int Soc Sports Nutr       Date:  2019-02-27       Impact factor: 5.150

3.  Effects of Acute Normobaric Hypoxia on Non-linear Dynamics of Cardiac Autonomic Activity During Constant Workload Cycling Exercise.

Authors:  Thomas Gronwald; Olaf Hoos; Kuno Hottenrott
Journal:  Front Physiol       Date:  2019-08-02       Impact factor: 4.566

4.  The Acute Effects of Normobaric Hypoxia on Strength, Muscular Endurance and Cognitive Function: Influence of Dose and Sex.

Authors:  Raci Karayigit; Mustafa Can Eser; Fatma Nese Sahin; Cengizhan Sari; Angela Sanchez-Gomez; Raul Dominguez; Mitat Koz
Journal:  Biology (Basel)       Date:  2022-02-15

5.  Individual Variation Exists Within the Psychological Response to Hypoxic Bed Rest: A Retrospective Analysis.

Authors:  Kunihito Tobita; Igor B Mekjavic; Adam C McDonnell
Journal:  Front Physiol       Date:  2022-02-10       Impact factor: 4.566

  5 in total

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