P-induced muscle fatigue leads to near-hyperbolic power-duration dependence.

Eur J Appl Physiol

BioSimulation Center, ul. Filarecka 6/7, 30-110, Kraków, Poland.

Published: October 2019

Purpose: Consequences of combining three ideas proposed previously by other authors: (1) that there exists a critical power (CP), above which no steady state in [Formula: see text]O (oxygen consumption) and metabolites can be achieved in voluntary constant-power exercise; (2) that muscle fatigue is related to decreased exercise efficiency (increased [Formula: see text]O/power output ratio); and (3) that P (inorganic phosphate) is the main fatigue-related metabolite are investigated.

Methods: A previously-developed computer model of the skeletal muscle bioenergetic system is used. It was assumed in computer simulations that skeletal muscle work terminates when cytosolic P (inorganic phosphate) exceeds a certain critical level.

Results: Simulated changes in muscle [Formula: see text]O, cytosolic ADP, pH, PCr and P as a function of time at various ATP usage activities (corresponding to power outputs) agreed well with experimental data. Computer simulations resulted in a fourth previously-published idea: (4) that the power-duration relationship describing the dependence of power output (PO) on the time to exhaustion of voluntary constant-power exercise at a given PO has a (near-)hyperbolic shape.

Conclusions: P is a major factor contributing to muscle fatigue, as such an assumption leads to a (near-)hyperbolic shape of the power-duration relationship, at least for exercise duration of ~ 1-10 min. Thus, a potential mechanism underlying the power-duration relationship shape is offered that was absent in the literature. Other factors/mechanisms, such as cytosol acidification, glycogen stores depletion and central fatigue can contribute to this relationship, especially in longer exercises.

Download full-text PDF

Source
http://dx.doi.org/10.1007/s00421-019-04204-8DOI Listing

Publication Analysis

Top Keywords

muscle fatigue
12
power-duration relationship
12
leads near-hyperbolic
8
[formula text]o
8
voluntary constant-power
8
constant-power exercise
8
inorganic phosphate
8
skeletal muscle
8
computer simulations
8
muscle
5

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!