Military training provides insight into metabolic responses under unique physiological demands that can be comprehensively characterized by global metabolomic profiling to identify potential strategies for improving performance. This study identified shared changes in metabolomic profiles across three distinct military training exercises, varying in magnitude and type of stress. Blood samples collected before and after three real or simulated military training exercises were analyzed using the same untargeted metabolomic profiling platform. Exercises included a 2-wk survival training course (ST, = 36), a 4-day cross-country ski march arctic training (AT, = 24), and a 28-day controlled diet- and exercise-induced energy deficit (CED, = 26). Log-fold changes of greater than ±1 in 191, 121, and 64 metabolites were identified in the ST, AT, and CED datasets, respectively. Most metabolite changes were within the lipid (57-63%) and amino acid metabolism (18-19%) pathways and changes in 87 were shared across studies. The largest and most consistent increases in shared metabolites were found in the acylcarnitine, fatty acid, ketone, and glutathione metabolism pathways, whereas the largest decreases were in the diacylglycerol and urea cycle metabolism pathways. Multiple shared metabolites were consistently correlated with biomarkers of inflammation, tissue damage, and anabolic hormones across studies. These three studies of real and simulated military training revealed overlapping alterations in metabolomic profiles despite differences in environment and the stressors involved. Consistent changes in metabolites related to lipid metabolism, ketogenesis, and oxidative stress suggest a potential common metabolomic signature associated with inflammation, tissue damage, and suppression of anabolic signaling that may characterize the unique physiological demands of military training. The extent to which metabolomic responses are shared across diverse military training environments is unknown. Global metabolomic profiling across three distinct military training exercises identified shared metabolic responses with the largest changes observed for metabolites related to fatty acids, acylcarnitines, ketone metabolism, and oxidative stress. These changes also correlated with alterations in markers of tissue damage, inflammation, and anabolic signaling and comprise a potential common metabolomic signature underlying the unique physiological demands of military training.
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http://dx.doi.org/10.1152/physiolgenomics.00008.2024 | DOI Listing |
Clin Orthop Relat Res
January 2025
Department of Rehabilitation Medicine, Brooke Army Medical Center, JBSA Fort Sam Houston, TX, USA.
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Department of Orthopaedic Surgery, Mayo Clinic, Phoenix, AZ, USA.
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View Article and Find Full Text PDFPLoS One
January 2025
Faculty of Psychology, Department of Cognition, Emotion, and Methods in Psychology, University of Vienna, Vienna, Austria.
The Satisfaction With Life Scale (SWLS) is a widely used self-report measure of subjective well-being, but studies of its measurement invariance across a large number of nations remain limited. Here, we utilised the Body Image in Nature (BINS) dataset-with data collected between 2020 and 2022 -to assess measurement invariance of the SWLS across 65 nations, 40 languages, gender identities, and age groups (N = 56,968). All participants completed the SWLS under largely uniform conditions.
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January 2025
Department of the Air Force Exercise Science Unit, JBSA-Randolph, TX 78150, USA.
Introduction: Physical fitness is an integral part of military readiness, and failure to meet military Physical Fitness Assessment (PFA) standards can severely damage or end careers. Postpartum active duty service members experience a drop in PFA scores and passing rates compared to their pre-pregnancy assessments. Each branch recently extended recovery time to 12 months, but more research is required to see if this change alone is enough to return both active duty and reserve component postpartum personnel to their own preconception PFA outcomes (scores, passing rates, and injury rates) and those of a control group of nullpartum female airmen.
View Article and Find Full Text PDFMil Psychol
January 2025
Military Performance Division, U.S. Army Research Institute of Environmental Medicine, Natick, Massachusetts, USA.
As the Army continues to adapt to evolving mission demands and global threats, those who execute the mission - both soldiers and Department of the Army (DA) civilians - must also adapt to changing occupational demands and requirements. Occupational stress within the military community is a threat to health and wellbeing that impacts not only individual soldiers and civilian personnel, but also units, families, and the broader military community. Hardiness is an operational requirement for military success, spirituality might be a means to positively impact soldier and DA Civilian hardiness.
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