Literature DB >> 18046002

Cortical and spinal modulation of antagonist coactivation during a submaximal fatiguing contraction in humans.

Morgan Lévénez1, S Jayne Garland, Malgorzata Klass, Jacques Duchateau.   

Abstract

This study investigates the control mechanisms at the cortical and spinal levels of antagonist coactivation during a submaximal fatiguing contraction of the elbow flexors at 50% of maximal voluntary contraction (MVC). We recorded motor-evoked potentials in the biceps brachii and triceps brachii muscles in response to magnetic stimulation of the motor cortex (MEP) and corticospinal tract (cervicomedullary motor-evoked potentials--CMEPs), as well as the Hoffmann reflex (H-reflex) and maximal M-wave (Mmax) elicited by electrical stimulation of the brachial plexus, before, during, and after the fatigue task. The results showed that although the coactivation ratio did not change at task failure, the MVC torque produced by the elbow flexors declined by 48% (P < 0.01) with no change in MVC torque for the elbow extensors. While the MEP and CMEP areas (normalized to Mmax) of the biceps brachii increased ( approximately 50%) over the first 40% of the time to task failure and then plateaued, both responses in the triceps brachii increased ( approximately 150-180%) gradually throughout the fatigue task. In contrast to the monotonic increase in the MEP and CMEP of the antagonist muscles, the H-reflex of the triceps brachii exhibited a biphasic modulation, increasing during the first part of the contraction before declining subsequently to 65% of its initial value. Collectively, these results suggest that the level of coactivation during a fatiguing contraction is mediated by supraspinal rather than spinal mechanisms and involves differential control of agonist and antagonist muscles.

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Year:  2007        PMID: 18046002     DOI: 10.1152/jn.00963.2007

Source DB:  PubMed          Journal:  J Neurophysiol        ISSN: 0022-3077            Impact factor:   2.714


  31 in total

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2.  Decline in voluntary activation contributes to reduced maximal performance of fatigued human lower limb muscles.

Authors:  K N Mileva; D P Sumners; J L Bowtell
Journal:  Eur J Appl Physiol       Date:  2012-03-21       Impact factor: 3.078

3.  Assessment of Neuromuscular Function Using Percutaneous Electrical Nerve Stimulation.

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4.  Fatigue-induced adjustment in antagonist coactivation by old adults during a steadiness task.

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Journal:  J Appl Physiol (1985)       Date:  2016-02-04

Review 5.  Performance Fatigability: Mechanisms and Task Specificity.

Authors:  Sandra K Hunter
Journal:  Cold Spring Harb Perspect Med       Date:  2018-07-02       Impact factor: 6.915

6.  Anodal transcranial direct current stimulation does not influence the neural adjustments associated with fatiguing contractions in a hand muscle.

Authors:  Achraf Abdelmoula; Stéphane Baudry; Jacques Duchateau
Journal:  Eur J Appl Physiol       Date:  2018-11-13       Impact factor: 3.078

7.  Comparative and reliability studies of neuromechanical leg muscle performances of volleyball athletes in different divisions.

Authors:  Chi-Pang Un; Kwan-Hwa Lin; Tzyy-Yuang Shiang; En-Chung Chang; Sheng-Chu Su; Hsing-Kuo Wang
Journal:  Eur J Appl Physiol       Date:  2012-07-14       Impact factor: 3.078

8.  Effect of training status on beta-range corticomuscular coherence in agonist vs. antagonist muscles during isometric knee contractions.

Authors:  Fabien Dal Maso; Marieke Longcamp; Sylvain Cremoux; David Amarantini
Journal:  Exp Brain Res       Date:  2017-07-19       Impact factor: 1.972

9.  Stressor-induced increase in muscle fatigability of young men and women is predicted by strength but not voluntary activation.

Authors:  Manda L Keller-Ross; Hugo M Pereira; Jaclyn Pruse; Tejin Yoon; Bonnie Schlinder-Delap; Kristy A Nielson; Sandra K Hunter
Journal:  J Appl Physiol (1985)       Date:  2014-02-13

Review 10.  Corticospinal responses to sustained locomotor exercises: moving beyond single-joint studies of central fatigue.

Authors:  Simranjit K Sidhu; Andrew G Cresswell; Timothy J Carroll
Journal:  Sports Med       Date:  2013-06       Impact factor: 11.136

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