AUTHOR=Sekel Nicole M. , Beckner Meaghan E. , Conkright William R. , LaGoy Alice D. , Proessl Felix , Lovalekar Mita , Martin Brian J. , Jabloner Leslie R. , Beck Alaska L. , Eagle Shawn R. , Dretsch Michael , Roma Peter G. , Ferrarelli Fabio , Germain Anne , Flanagan Shawn D. , Connaboy Christopher , Haufler Amy J. , Nindl Bradley C. TITLE=Military tactical adaptive decision making during simulated military operational stress is influenced by personality, resilience, aerobic fitness, and neurocognitive function JOURNAL=Frontiers in Psychology VOLUME=14 YEAR=2023 URL=https://www.frontiersin.org/journals/psychology/articles/10.3389/fpsyg.2023.1102425 DOI=10.3389/fpsyg.2023.1102425 ISSN=1664-1078 ABSTRACT=
Laboratory-based studies designed to mimic combat or military field training have consistently demonstrated deleterious effects on warfighter’s physical, cognitive, and emotional performance during simulated military operational stress (SMOS).
The present investigation sought to determine the impact of a 48-h simulated military operational stress (SMOS) on military tactical adaptive decision making, and the influence of select psychological, physical performance, cognitive, and physiological outcome measures on decision making performance.
Male (
Overall, military tactical decision-making declined 1.7% from D1 to D3 (
The present findings suggest that service members whose adaptive decision making abilities improved throughout SMOS (i.e., high adaptors) demonstrated better baseline psychological/self-reported resilience and aerobic capacity. Further, changes in adaptive decision-making were distinct from those of lower order cognitive functions throughout SMOS exposure. With the transition of future military conflicts placing higher priority on enhancing and sustaining cognitive readiness and resiliency, data presented here demonstrates the importance of measuring and categorizing baseline measures inherent to military personnel, in order to change and train one’s ability to suffer less of a decline during high stress conditions.