Relationship between muscular extensibility, strength and stability and the transmission of impacts during fatigued running

Sports Biomech. 2023 Oct;22(10):1364-1380. doi: 10.1080/14763141.2020.1797863. Epub 2020 Aug 24.

Abstract

The aim was to analyse the relationship between isokinetic strength, dynamic stability, muscular extensibility and impacts transmission during fatigued running. Low- and high-frequency impacts-related to body movements and the severity of impacts, respectively-were assessed in 17 male recreational runners, before and after a treadmill running fatigue protocol, using a triaxial accelerometry system. High-frequency impacts in the tibia were negatively correlated to the knee angle at which the quadriceps peak torque was reached (p = 0.014), and also to the extensibility of the hamstrings and soleus (p = 0.001 and p = 0.023, respectively). The increases of high-frequency impacts in tibia caused by fatigue were positively related to the knee angle at which the hamstrings peak torque was reached (p = 0.001) and to stability after landing (p = 0.007). The attenuation of high-frequency impacts was positively related to hamstrings/quadriceps ratio of strength (p = 0.010) and to stability (p = 0.006). Limiting possible deficits in hamstring and soleus range of motion, improving stability after landing, developing hamstring and quadriceps strength in elongated muscle range, and maintaining a balanced ratio of hamstring/quadriceps strength could help to reduce the injury risk in running.

Keywords: Accelerometry; fatigue; isokinetic strength; postural control; range of motion.

MeSH terms

  • Biomechanical Phenomena
  • Fatigue
  • Humans
  • Male
  • Muscle Strength
  • Muscle, Skeletal* / physiology
  • Quadriceps Muscle / physiology
  • Running* / physiology
  • Torque