Abstract
Introduction: This study investigated which objective measures best predict cognitive performance in ultra-endurance athletes.
Methods: Forty-three recreational cyclists completed a race of ?341 km over 18 h, with cognitive function assessed using a three-stage Stroop Test before, immediately after, and 24 h post-race. For each stage, results from the three time points were combined and analyzed using regression analyses to examine their relationship with various anthropometric, metabolic, and performance-related
parameters.
Results: Higher average race speed was associated with improved simple reaction time, while longer race duration predicted better performance in more cognitively demanding tasks, such as inhibitory control. Muscle mass was the only anthropometric variable significantly linked to enhanced cognition. Other factors-including age, percentage of heart rate reserve, training volume, fat mass,
lean mass, bone mass, and metabolic markers-showed no associations.
Conclusion: These findings suggest that race pacing and muscle mass play key roles in supporting cognitive resilience during prolonged physical exertion.
Methods: Forty-three recreational cyclists completed a race of ?341 km over 18 h, with cognitive function assessed using a three-stage Stroop Test before, immediately after, and 24 h post-race. For each stage, results from the three time points were combined and analyzed using regression analyses to examine their relationship with various anthropometric, metabolic, and performance-related
parameters.
Results: Higher average race speed was associated with improved simple reaction time, while longer race duration predicted better performance in more cognitively demanding tasks, such as inhibitory control. Muscle mass was the only anthropometric variable significantly linked to enhanced cognition. Other factors-including age, percentage of heart rate reserve, training volume, fat mass,
lean mass, bone mass, and metabolic markers-showed no associations.
Conclusion: These findings suggest that race pacing and muscle mass play key roles in supporting cognitive resilience during prolonged physical exertion.
| Original language | English |
|---|---|
| Article number | 1649669 |
| Number of pages | 8 |
| Journal | Frontiers in Cognition |
| Volume | 4 |
| DOIs | |
| Publication status | Published - 22 Aug 2025 |
Keywords*
- endurance exercise
- cognitive functions
- muscle mass
- executive functions
- reaction time
- Stroop Test
- race pacing
Field of Science*
- 3.1 Basic medicine
- 3.3 Health sciences
Publication Type*
- 1.1. Scientific article indexed in Web of Science and/or Scopus database
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