Persistent Contralateral Pain Compromises Exercise Tolerance but Does not Alter Corticomotor Responses During Repeated, Submaximal Isometric Knee Extensions to Task Failure
Author:
Funder
Natural Sciences and Engineering Research Council of Canada
Publisher
Elsevier BV
Subject
General Neuroscience
Reference36 articles.
1. Effects of pre-induced fatigue vs. concurrent pain on exercise tolerance, neuromuscular performance and corticospinal responses of locomotor muscles;Aboodarda;J Physiol,2020
2. Exercise-induced fatigue in one leg does not impair the neuromuscular performance in the contralateral leg but improves the excitability of the ipsilateral corticospinal pathway;Aboodarda;Brain Sci,2019
3. Significance of Group III and IV muscle afferents for the endurance exercising human;Amann;Clin Exp Pharmacol Physiol,2012
4. Tolerance of exercise-induced pain at a fixed rating of perceived exertion predicts time trial cycling performance;Astokorki;Scand J Med Sci Sports,2017
5. The effects of pain induced by blood flow occlusion in one leg on exercise tolerance and corticospinal excitability and inhibition of the contralateral leg in males;Azevedo;Appl Physiol Nutr Metab,2022
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1. Exercise‐induced pain within endurance exercise settings: Definitions, measurement, mechanisms and potential interventions;Experimental Physiology;2024-07-10
2. Reliability of transcranial magnetic stimulation-evoked responses on knee extensor muscles during cycling;Experimental Brain Research;2024-05-28
3. Enhancing endurance performance with combined imagined and actual physical practice;European Journal of Applied Physiology;2024-05-24
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