Effect of ketone monoester supplementation on elite operators' mountaineering training.

cognitive performance high altitude hypobaric hypoxia military resilience β-hydroxybutyrate

Journal

Frontiers in physiology
ISSN: 1664-042X
Titre abrégé: Front Physiol
Pays: Switzerland
ID NLM: 101549006

Informations de publication

Date de publication:
2024
Historique:
received: 02 04 2024
accepted: 15 08 2024
medline: 18 9 2024
pubmed: 18 9 2024
entrez: 18 9 2024
Statut: epublish

Résumé

Special Operations Forces (SOF) often conduct operations in physiologically stressful environments such as severe heat, cold, or hypoxia, which can induce decreases in a variety of cognitive abilities. Given the promising empirical demonstration of the efficacy of exogenous ketone monoester (KME) supplementation in attenuating cognitive performance decrease during hypoxia at rest in a laboratory setting, we conducted a real-world, field experiment examining KME's efficacy during high-altitude mountaineering, an austere environment in which US SOF have conducted increasing numbers of operations over the past two decades. Specifically, 34 students and cadre at the US Army 10th Special Forces Group Special Operations Advanced Mountaineering School (SOAMS) participated in a randomized, double-blind, placebo (PLA)-controlled crossover trial (KME vs. PLA) over 2 days of tactical mountain operations training. The participants ascended from 7,500 ft in altitude (basecamp) to 12,460 ft on 1 day and 13,627 ft the other day (in randomized order), while performing various training activities inducing high physical and cognitive loads over 8-12 h, and consumed six doses of KME or PLA 2-3 h apart throughout each training day. While KME increased blood ketone levels and decreased glucose levels, there were no clear indications that the elevated ketone level enhanced physical or cognitive performance. KME also produced a greater incidence of heartburn, nausea, and vomiting. In these elite operators, high-altitude mountaineering had a limited impact on cognitive performance, and KME supplementation did not demonstrate any benefit.

Identifiants

pubmed: 39290617
doi: 10.3389/fphys.2024.1411421
pii: 1411421
pmc: PMC11405315
doi:

Types de publication

Journal Article

Langues

eng

Pagination

1411421

Informations de copyright

Copyright © 2024 Miyatsu, McAdam, Coleman, Chappe, Tuggle, McClure and Bamman.

Déclaration de conflit d'intérêts

The authors declare that the research was conducted in the absence of any commercial or financial relationships that could be construed as a potential conflict of interest.

Auteurs

Toshiya Miyatsu (T)

Healthspan, Resilience and Performance Research, Institute for Human and Machine Cognition, Pensacola, FL, United States.

Jeremy McAdam (J)

Healthspan, Resilience and Performance Research, Institute for Human and Machine Cognition, Pensacola, FL, United States.

Kody Coleman (K)

Healthspan, Resilience and Performance Research, Institute for Human and Machine Cognition, Pensacola, FL, United States.
Department of Neurosurgery, University of North Carolina School of Medicine, Chapel Hill, NC, United States.

Ed Chappe (E)

Healthspan, Resilience and Performance Research, Institute for Human and Machine Cognition, Pensacola, FL, United States.

Steven C Tuggle (SC)

Healthspan, Resilience and Performance Research, Institute for Human and Machine Cognition, Pensacola, FL, United States.

Tyler McClure (T)

Healthspan, Resilience and Performance Research, Institute for Human and Machine Cognition, Pensacola, FL, United States.
School of Health and Human Performance, Dublin City University, Dublin, Ireland.

Marcas M Bamman (MM)

Healthspan, Resilience and Performance Research, Institute for Human and Machine Cognition, Pensacola, FL, United States.

Classifications MeSH