INVESTIGATING THE HAMSTRING-TO-QUADRICEPS MUSCLE STRENGTH RATIO IN A FATIGUED STATE

Loading...
Thumbnail Image

Date

Authors

Namavar, Reza

Journal Title

Journal ISSN

Volume Title

Publisher

University of Oklahoma – Graduate College

Item Statistics

  • Total Views: 18
  • Total Downloads: 60
  • Views in the Last Month: 0

Abstract

Background: Muscle fatigue is known to reduce force production and alter neuromuscular performance; however, its effects on muscle balance, particularly the hamstring-to-quadriceps (H:Q) ratio, remain unclear. Understanding how fatigue influences both strength and muscle balance is important for injury prevention and performance assessment.Methods: Fifteen healthy, untrained adults (11 males, 4 females) participated in this study. Peak torque of the hamstrings and quadriceps was assessed using isokinetic dynamometry at two angular velocities (60°/s and 180°/s) before and immediately after a fatigue protocol consisting of repeated shuttle runs. The H:Q ratio was calculated at each velocity. Perceived exertion (RPE) and performance (distance covered across six laps) were also recorded. A repeated-measures ANOVA was conducted to examine the effects of time (pre vs. post) and velocity on muscle performance outcomes. Results: Fatigue resulted in significant reductions in peak torque, particularly at the higher velocity (180°/s), indicating greater fatigue-related decline under faster contraction conditions. In contrast, no significant changes were observed in the H:Q ratio following fatigue, suggesting that both muscle groups were affected proportionally. A significant main effect of velocity was found for the H:Q ratio, indicating differences between testing speeds independent of fatigue. Perceived exertion increased progressively across laps, confirming the effectiveness of the fatigue protocol, while performance showed a non-significant decline with substantial individual variability. Conclusion: These findings indicate that fatigue significantly impairs muscle force production but does not necessarily alter muscle balance as measured by the H:Q ratio. The results highlight the importance of considering contraction velocity when assessing fatigue effects and suggest that the H:Q ratio alone may not be sensitive to fatigue-related changes. Additionally, substantial individual variability in fatigue responses emphasizes the need for individualized assessment in both research and applied settings.

Description

Citation

Related file

Notes

Collections

Endorsement

Review

Supplemented By

Referenced By

DOI

Collection Detail

# of Isolates from RBM

# of Isolates from TV8