ArticleFrontiers in physiology2026
Physiological associations with heart rate-speed decoupling during a half-marathon in adolescent endurance runners.
Article in Frontiers in physiology, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
Introduction: From a process-oriented perspective of endurance durability, this exploratory study aimed to characterize the dynamic evolution of heart rate-running speed decoupling during a simulated half-marathon in adolescent endurance athletes and to examine phase-specific associations between decoupling characteristics and physiological regulation. Methods: Thirteen adolescent endurance runners with systematic endurance training completed a 21.1-km simulated half-marathon under self-paced conditions. Heart rate and running speed were recorded continuously and aggregated into consecutive 2-km distance segments. Internal and external loads were normalized to individual maximal heart rate and running speed at VO Results: Heart rate-running speed decoupling increased progressively throughout the run and showed substantial inter-individual variability. The median decoupling onset occurred at 10.0 km (interquartile range: 7.0-12.0 km). An earlier onset was associated with greater concurrent increases in core body temperature (ρ = -0.579, Discussion: During a simulated half-marathon, heart rate-running speed decoupling evolved progressively in adolescent endurance athletes and demonstrated marked inter-individual variability. Decoupling onset and maximal magnitude were primarily associated with thermoregulatory and electrolyte-related physiological loads during the early to middle stages of exercise, whereas decoupling dynamics in the latter stage were more closely aligned with physiological responses related to energy supply regulation. These findings support heart rate-running speed decoupling as a durability-related indicator with phase-specific physiological characteristics during prolonged endurance exercise.
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