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


ABSTRACT: BACKGROUND:A better understanding of hypoxia-induced changes in substrate utilisation can facilitate the development of nutritional strategies for mountaineers, military personnel and athletes during exposure to altitude. However, reported metabolic responses are currently divergent. As such, this systematic review and meta-analysis aims to determine the changes in substrate utilisation during exercise in hypoxia compared with normoxia and identify study characteristics responsible for the heterogeneity in findings. METHODS:A total of six databases (PubMed, the Cochrane Library, MEDLINE, SPORTDiscus, PsychINFO, and CINAHL via EBSCOhost) were searched for published original studies, conference proceedings, abstracts, dissertations and theses. Studies were included if they evaluated respiratory exchange ratio (RER) and/or carbohydrate or fat oxidation during steady state exercise matched for relative intensities in normoxia and hypoxia (normobaric or hypobaric). A random-effects meta-analysis was performed on outcome variables. Meta-regression analysis was performed to investigate potential sources of heterogeneity. RESULTS:In total, 18 studies were included in the meta-analysis. There was no significant change in RER during exercise matched for relative exercise intensities in hypoxia, compared with normoxia (mean difference: 0.01, 95% CI: -0.02 to 0.05; n?=?31, p?=?0.45). Meta-regression analysis suggests that consumption of a pre-exercise meal (p?

SUBMITTER: Griffiths A 

PROVIDER: S-EPMC6391781 | biostudies-literature | 2019 Feb

REPOSITORIES: biostudies-literature

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

Griffiths Alex A   Shannon Oliver M OM   Matu Jamie J   King Roderick R   Deighton Kevin K   O'Hara John P JP  

Journal of the International Society of Sports Nutrition 20190227 1


<h4>Background</h4>A better understanding of hypoxia-induced changes in substrate utilisation can facilitate the development of nutritional strategies for mountaineers, military personnel and athletes during exposure to altitude. However, reported metabolic responses are currently divergent. As such, this systematic review and meta-analysis aims to determine the changes in substrate utilisation during exercise in hypoxia compared with normoxia and identify study characteristics responsible for t  ...[more]

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