Fatigue development and perceived response during self-paced endurance exercise: state-of-the-art review

Eur J Appl Physiol. 2021 Mar;121(3):687-696. doi: 10.1007/s00421-020-04549-5. Epub 2021 Jan 2.

Abstract

Performance in self-paced endurance exercises results from continuous fatigue symptom management. While it is suggested that perceived responses and neuromuscular fatigue development may determine variations in exercise intensity, it is uncertain how these fatigue components interact throughout the task. To address the fatigue development in self-paced endurance exercises, the following topics were addressed in the present review: (1) fatigue development during constant-load vs. self-paced endurance exercises; (2) central and peripheral fatigue and perceived exertion interconnections throughout the self-paced endurance exercises; and (3) future directions and recommendations. Based on the available literature, it is suggested (1) the work rate variations during a self-paced endurance exercise result in transitions between exercise intensity domains, directly impacting the end-exercise central and peripheral fatigue level when compared to constant-load exercise mode; (2) central and peripheral fatigue, as well as perceived exertion response contribute to exercise intensity regulation at the different stages of the trial. It seems that while neuromuscular fatigue development might be relevant at beginning of the trial, the perceived exertion might interfere in the remaining parts to achieve maximal values only at the finish line; (3) future studies should focus on the mechanisms underpinning fatigue components interactions throughout the task and its influence on exercise intensity variations.

Keywords: Central fatigue; Endurance performance; Pacing strategy; Peripheral fatigue.

Publication types

  • Review

MeSH terms

  • Exercise*
  • Humans
  • Mental Fatigue / physiopathology*
  • Muscle Fatigue / physiology*
  • Physical Endurance*
  • Physical Exertion*
  • Running*