Jove
Visualize
Contact Us
JoVE
x logofacebook logolinkedin logoyoutube logo
ABOUT JoVE
OverviewLeadershipBlogJoVE Help Center
AUTHORS
Publishing ProcessEditorial BoardScope & PoliciesPeer ReviewFAQSubmit
LIBRARIANS
TestimonialsSubscriptionsAccessResourcesLibrary Advisory BoardFAQ
RESEARCH
JoVE JournalMethods CollectionsJoVE Encyclopedia of ExperimentsArchive
EDUCATION
JoVE CoreJoVE BusinessJoVE Science EducationJoVE Lab ManualFaculty Resource CenterFaculty Site
Terms & Conditions of Use
Privacy Policy
Policies

Related Concept Videos

Muscle Recovery and Fatigue01:24

Muscle Recovery and Fatigue

Muscle fatigue refers to the decline in a muscle's ability to maintain the force of contraction after prolonged activity. It primarily stems from changes within muscle fibers. Even before experiencing muscle fatigue, one may feel tired and have the urge to stop the activity. This response, known as central fatigue, occurs due to changes in the central nervous system, namely the brain and spinal cord. While there is no single mechanism that induces fatigue, it may serve as a protective response...
Fatigue01:21

Fatigue

Fatigue occurs when materials rupture under repeated or fluctuating loads, even at stress levels far below their static breaking strength. It typically results in brittle failure, even for ductile materials. It is a critical consideration in designing machines and structural components subjected to repetitive or varying loads. The nature of these loadings can range from fluctuating loads like unbalanced pump impellers causing vibrations to repeatedly bending a thin steel rod wire back and forth...
Exercise Stress Test01:26

Exercise Stress Test

Introduction
Exercise stress testing, commonly known as a treadmill test, is a noninvasive procedure used to evaluate cardiovascular function and diagnose heart conditions.
Definition
An exercise stress test measures the heart's response to exertion using a treadmill or stationary bicycle. Chest electrodes record the heart's electrical activity through an ECG, and blood pressure is monitored regularly.
Purposes
Fatigue Strength of Concrete01:22

Fatigue Strength of Concrete

Fatigue, in the context of materials science and engineering, refers to the weakening or failure of a material caused by repeatedly applied loads, even if these loads are below the strength limit of the material. Fatigue strength in concrete is a critical property that influences its durability and longevity. Concrete can fail in two ways due to fatigue. Static fatigue or creep rupture occurs under a constant load or one that increases slowly. The other failure mode is due to cyclical or...

You might also read

Related Articles

Articles linked to this work by shared authors, journal, and citation graph.

Sort by
Same author

Low carbohydrate high fat ketogenic diets on the exercise crossover point and glucose homeostasis.

Frontiers in physiology·2023
Same author

The lateral batting backlift technique: is it a contributing factor to success for professional cricket players at the highest level?

South African journal of sports medicine·2023
Same author

Use of social media by health professionals in South Africa.

South African medical journal = Suid-Afrikaanse tydskrif vir geneeskunde·2017
Same author

Relationship between perceived exertion during exercise and subsequent recovery measurements.

Biology of sport·2017
Same author

Brain oxygenation declines in elite Kenyan runners during a maximal interval training session.

European journal of applied physiology·2017
Same author

Development and Validity of the Rating-of-Fatigue Scale.

Sports medicine (Auckland, N.Z.)·2017

Related Experiment Video

Updated: Jul 8, 2026

Measuring the Motor Aspect of Cancer-Related Fatigue using a Handheld Dynamometer
07:22

Measuring the Motor Aspect of Cancer-Related Fatigue using a Handheld Dynamometer

Published on: February 20, 2020

Fatigue during a 5-km running time trial.

A T Nummela1, K A Heath, L M Paavolainen

  • 1KIHU, Research Institute for Olympic Sports, Jyväskylä, Finland. ari.nummela@kihu.fi

International Journal of Sports Medicine
|January 24, 2008
PubMed
Summary

Muscle fatigue during a 5-km run relates more to endurance performance and pacing, not maximal sprint ability. Sprint performance, however, is linked to fatigue measured during maximal efforts like the 20-m sprint.

More Related Videos

The Treadmill Fatigue Test: A Simple, High-throughput Assay of Fatigue-like Behavior for the Mouse
09:25

The Treadmill Fatigue Test: A Simple, High-throughput Assay of Fatigue-like Behavior for the Mouse

Published on: May 31, 2016

Conducting Maximal and Submaximal Endurance Exercise Testing to Measure Physiological and Biological Responses to Acute Exercise in Humans
07:26

Conducting Maximal and Submaximal Endurance Exercise Testing to Measure Physiological and Biological Responses to Acute Exercise in Humans

Published on: October 17, 2018

Related Experiment Videos

Last Updated: Jul 8, 2026

Measuring the Motor Aspect of Cancer-Related Fatigue using a Handheld Dynamometer
07:22

Measuring the Motor Aspect of Cancer-Related Fatigue using a Handheld Dynamometer

Published on: February 20, 2020

The Treadmill Fatigue Test: A Simple, High-throughput Assay of Fatigue-like Behavior for the Mouse
09:25

The Treadmill Fatigue Test: A Simple, High-throughput Assay of Fatigue-like Behavior for the Mouse

Published on: May 31, 2016

Conducting Maximal and Submaximal Endurance Exercise Testing to Measure Physiological and Biological Responses to Acute Exercise in Humans
07:26

Conducting Maximal and Submaximal Endurance Exercise Testing to Measure Physiological and Biological Responses to Acute Exercise in Humans

Published on: October 17, 2018

Area of Science:

  • Exercise Physiology
  • Sports Science
  • Biomechanics

Background:

  • Understanding fatigue mechanisms is crucial for optimizing endurance running performance.
  • Neuromuscular fatigue can significantly impact running economy and performance during prolonged exercise.

Purpose of the Study:

  • To investigate fatigue-induced changes in neuromuscular and stride characteristics during and after a 5-km running time trial.
  • To differentiate between fatigue measured during maximal efforts versus fatigue experienced during a 5-km time trial.

Main Methods:

  • Eighteen well-trained male distance runners participated.
  • Maximal 20-m sprint tests and maximal voluntary contraction (MVC) were performed pre- and post-5-km time trial.
  • Electromyography (EMG) of five lower limb muscles was measured during all tests.

Main Results:

  • Muscle fatigue from maximal exercises (20-m sprint, MVC) did not correlate with fatigue during the 5-km time trial.
  • Fatigue in the 20-m sprint test correlated with pretest sprint velocity.
  • Velocity loss during the 5-km time trial was inversely related to 5-km performance and training volume.

Conclusions:

  • Fatigue measured at maximal effort (pre/post 5-km) is more indicative of sprint than endurance performance.
  • Fatigue experienced during a 5-km run is linked to endurance capacity and pacing strategies.