Menu

HomeHow it worksContact UsContact Us

Integrating mechanical, physiological, and muscle oxygenation responses during field-based tethered repeated-sprint exercise in male professional soccer players.

Manchado-Gobatto FB, Torres RS, Rasteiro FM, Pinto A, Scariot PPM, Marostegan AB et al. ยท Physiological reports ยท 2026

Ten professional soccer players did six all-out 35-m tethered sprints with 10-second rests while researchers tracked force, velocity, power, and muscle oxygen levels in the thigh (vastus lateralis) and arm (biceps brachii). The thigh muscle showed much greater oxygen depletion than the arm, oxygen levels only related to sprint performance in the last two sprints, and thigh oxygenation was linked to how much speed players lost across sprints; post-exercise heart rate and blood lactate showed no relationship with muscle oxygenation.
Takeaway: Track speed loss across repeated sprints as a practical fatigue marker, since it reflects working-muscle oxygen depletion better than heart rate or lactate do.
Abstract (source)

Repeated-sprint ability is a key determinant of soccer performance. However, some mechanical and physiological responses underlying this task remain incompletely understood. This study characterized mechanical responses (force, velocity, and power) and regional muscle oxygen saturation (rSmO 2 ) in the vastus lateralis (VL) and biceps brachii (BB) during field-based tethered repeated-sprint exercise (RSE). Associations between muscle oxygenation and mechanical performance, as well as post-exercise rSmO 2 , heart rate (HR), and blood lactate (LAC), were also examined. Ten professional soccer players performed a tethered Running Anaerobic Sprint Test (6 ร— 35-m all-out sprints separated by 10-s intervals), while mechanical variables and rSmO 2 were continuously recorded. Muscle oxygenation differed according to muscle function throughout exercise and recovery. The VL exhibited greater deoxygenation during sprints, whereas the BB showed a more preserved oxygenation profile. Associations between rSmO 2 and mechanical performance were observed only during the fifth and sixth sprints. Furthermore, only VL integrated rSmO 2 was positively correlated with the velocity fatigue index, whereas BB oxygenation provided complementary information on the physiological adjustments associated with RSE. Post-exercise HR and LAC were not correlated with rSmO 2 in both muscles. Simultaneous assessment of locomotor and non-locomotor muscles provides complementary insights into fatigue development and post-exercise recovery RSE.

Primary studyRecovery & Sleep
Read the original โ†’