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  5. Fatigue-Related Alterations to Intra-Muscular Coherence
 
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Fatigue-Related Alterations to Intra-Muscular Coherence

Author(s)
McManus, Lara M.  
Hu, Xiaogang  
Rymer, William  
Suresh, Nina  
Lowery, Madeleine M.  
Uri
http://hdl.handle.net/10197/11083
Date Issued
2015-04-24
Date Available
2019-09-25T13:37:31Z
Abstract
Oscillations in the alpha (8-12 Hz), beta (15-35 Hz) and gamma (35-60 Hz) frequency bands are commonly observed in recordings from the primary motor cortex. Coherence analysis based on motor unit spike trains is commonly used to quantify the degree of shared cortical input and the common modulation of motor unit discharge rates between muscles. In this study, intra-muscular coherence is used to investigate the alterations in the neural drive to the First Dorsal Interosseous muscle directly after a fatiguing contraction and following a rest period. An increase in coherence was observed for all frequency bands examined, which was statistically significant within the alpha and beta frequency ranges. There was no consistent difference between the coherence estimates obtained pre-fatigue and those reported after the recovery period. The increase in beta band coherence post-fatigue may indicate increased levels of cortical drive to the motor unit pool. Although the functional significance behind the increase in beta frequency coherence is unclear, it may aid in the coordination of muscle activity to compensate for the decline in the force generating capacity after fatigue.
Sponsorship
Irish Research Council
Type of Material
Conference Publication
Publisher
IEEE
Copyright (Published Version)
2015 IEEE
Subjects

Coherence

Muscles

Fatigue

Force

Firing

Electromyography

Physiology

DOI
10.1109/NER.2015.7146771
Web versions
https://neuro.embs.org/2015/
Language
English
Status of Item
Peer reviewed
Conference Details
The 7th International IEEE EMBS Conference on Neural Engineering (CNE), Montpellier, France, 22-24 April 2015
This item is made available under a Creative Commons License
https://creativecommons.org/licenses/by-nc-nd/3.0/ie/
File(s)
No Thumbnail Available
Name

FatigueAlterations_IEEE_preprint.docx

Description
Accepted Manuscript Preprint
Size

3.3 MB

Format

Microsoft Word

Checksum (MD5)

1eb19f463ff90ea61f1db0bc0fffd355

Owning collection
Electrical and Electronic Engineering Research Collection

Item descriptive metadata is released under a CC-0 (public domain) license: https://creativecommons.org/public-domain/cc0/.
All other content is subject to copyright.

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