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  4. Assessment of H reflex sensitivity with M wave alternation consequent to fatiguing contractions
 
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Assessment of H reflex sensitivity with M wave alternation consequent to fatiguing contractions

Journal
International Journal of Neuroscience
Journal Volume
118
Journal Issue
9
Pages
1317-1330
Date Issued
2008
Author(s)
Hwang I.-S.
CHENG-YA HUANG  
Wu P.-S.
Chen Y.-C.
Wang C.-H.
DOI
10.1080/00207450802055606
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-49549096257&doi=10.1080%2f00207450802055606&partnerID=40&md5=6211034b7388e8304112185092e63a16
https://scholars.lib.ntu.edu.tw/handle/123456789/505001
Abstract
The objective of this study was to examine the changes in H reflex sensitivity after neuromuscular fatigue associated with fluctuations of the M wave. In the maximal and submaximal voluntary contraction (MVC and SMVC) paradigms, subjects performed voluntary plantarflexion at 100% MVC and 40% MVC respectively until the limit of torque maintenance was reached. In the submaximal electrical stimulation (SMES) paradigm, the tricep surae was exhausted with sustained electrical stimulation of 40% of the maximal tolerable intensity at a 40-Hz stimulus rate. The H reflexes and maximal M waves (M(max)) of the soleus were recorded before and after the three fatigue paradigms, and the H reflex was standardized with M(max) to minimize possible bias due to fatigue-induced M wave fluctuation. The results showed a significant increase in the standardized H reflex due to the SMES paradigm in spite of M(max) potentiation. The SMVC paradigm led to a reduction in size of the standardized H reflex without modification of M(max), whereas the standardized H reflex was not mediated by the MVC paradigm, which contributed to a noticeable M(max) potentiation. The present study underscored the fact that the H reflex sensitivity and M wave amplitude were not necessarily suppressed consequent to neuromuscular fatigue, but varied with the activation history of a muscle for size-dependent efficacy of the Ia transmission pathways and postactivation potentiation.
Type
journal article

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