Self-Reported Sleep Quality and Cognitive Performance in Special Operations Forces Personnel
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ID: 319172
2026
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Abstract
INTRODUCTION: Special Operations Forces (SOF) comprise a segment of military personnel whose tasks and missions often require complex cognition. Sleep is important to maintain peak cognitive performance, as lack of adequate sleep can lead to decrements in reaction time, memory, and other facets of cognition. Little research has assessed the association between sleep quality and cognitive performance in SOF populations. We broadly hypothesized that poorer sleep quality in SOF personnel would be associated with decrements in cognitive performance. MATERIALS AND METHODS: A group of 183 male SOF personnel answered questions from the Pittsburgh Sleep Quality Index (PSQI) about their sleep habits during the month prior to their study visit across seven components of sleep quality. Participants also completed ten cognitive tasks using the Senaptec Sensory Station during the same study visit. We compared PSQI and cognitive performance scores using Spearman correlations, exploring any significant correlations (α = .05) further in multivariate analysis. We performed linear regression to assess the potential effect of sleep quality on cognitive performance while controlling for demographics, years of military service, traumatic brain injury history, and mental health symptoms. We used SAS 9.4 for statistical analysis. This study was approved by the Institutional Review Board of the University of North Carolina at Chapel Hill (IRB #14-1364). RESULTS: Poorer sleep was weakly correlated with longer times to accurately capture targets ("Target Capture") and improved inhibitory control ("Go/No-Go" (GNG)). When controlling for confounders, reduced sleep efficiency (β = 1.50, 95% CI: 0.46, 2.54) and more frequent sleep disturbance (β = 2.05, 95% CI: 0.18, 3.91) were both associated with better scores on GNG, which evaluates an individual's ability to quickly distinguish between targets that require a response ("Go") and those that do not ("No-Go"). When adjusting for multiple comparisons using a Bonferroni correction, the association between reduced sleep efficiency and faster/more accurate GNG performance maintained statistical significance (β = 1.50, Bonferroni-corrected 99.2% CI: 0.10, 2.90), but the association between more frequent sleep disturbance and faster/more accurate performance on GNG did not (β = 2.05, Bonferroni-corrected 99.2% CI: -0.46, 4.55). CONCLUSIONS: Contrary to our hypothesis, reduced sleep efficiency was associated with better GNG performance in a population of SOF personnel. GNG assesses visual processing speed, reaction time, and decision-making skills under pressure to obtain a measure of inhibitory control, a high-level cognitive process that is a key facet of executive function. Decreased sleep quality impairs these constructs in civilian populations, so the ability to overcome fatigue and execute demanding decisions accurately and with high speed in this population is notable. Future research is needed to determine if the relationship between sleep quality and cognitive performance is possibly related to increased cognitive effort by those with worse sleep or other yet undiscovered determinants of military brain health.
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openalex_W7166835092
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| Authors | Daniel T Corry, Adam W. Kiefer, Brock A Benedict, Jason P. Mihalik |
| Journal | Military Medicine |
| Year | 2026 |
| DOI |
10.1093/milmed/usag299
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| URL | |
| Keywords | Keywords not found |
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