2006Hangtian yixue yu yixue gongchengRequires access

sEMG Dynamics of Muscle Fatigue Induced by Maximal Voluntary Isometric Contractions

Yang Zhe

Open publisher page 0 citations

Abstract

Objective To investigate the effect of muscle fatigue on linear and nonlinear dynamics of sEMG from biceps brachii during maximal voluntary isometric contractions.Method Ten young volunteers subjects performed non-fatiguing isometric contractions with four load levels and fatiguing maximal voluntary isometric contractions.Linear and nonlinear analysis were used to examine the sEMG signals and the changes of sEMG signals when MVC decreased to levels of 80% MVC,70% MVC,60%MVC and 50%MVC compared with the signals of sEMG during non-fatiguing contractions.Result Statistical analyses revealed that AEMG and %DET were significantly higher at fatigue states than those at non fatigue states,while MPF and C(n)were significantly lower than those at non fatigue states.With the development of muscle fatigue,MPF and %DET significantly decreased during maximal effort,while AEMG and %DET stayed stable.The interaction of load level and fatigue state for AEMG,MPF and C(n)were significant.Conclusion MPF and C(n)significantly decrease during maximal voluntary isometric contractions.sEMG dynamics between fatigue state and non-fatigue state is significantly different.

About this research paper

What this paper is about

Objective To investigate the effect of muscle fatigue on linear and nonlinear dynamics of sEMG from biceps brachii during maximal voluntary isometric contractions.Method Ten young volunteers subjects performed non-fatiguing isometric contractions with four load levels and fatiguing maximal voluntary isometric contractions.Linear and nonlinear analysis were used to examine the sEMG signals and the changes of sEMG signals when MVC decreased to levels of 80% MVC,70% MVC,60%MVC and 50%MVC compared with the signals of sEMG during non-fatiguing contractions.Result Statistical analyses revealed that AEMG and %DET were significantly higher at fatigue states than those at non fatigue states,while MPF and C(n)were significantly lower than those at non fatigue states.With the development of muscle fatigue,MPF and %DET significantly decreased during maximal effort,while AEMG and %DET stayed stable.The interaction of load level and fatigue state for AEMG,MPF and C(n)were significant.Conclusion MPF and C(n)significantly decrease during maximal voluntary isometric contractions.sEMG dynamics between fatigue state and non-fatigue state is significantly different.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Objective To investigate the effect of muscle fatigue on linear and nonlinear dynamics of sEMG from biceps brachii during maximal voluntary isometric contractions.Method Ten young volunteers subjects performed non-fatiguing isometric contractions with four load levels and fatiguing maximal voluntary isometric contractions.Linear and nonlinear analysis were used to examine the sEMG signals and the changes of sEMG signals when MVC decreased to levels of 80% MVC,70% MVC,60%MVC and 50%MVC compared with the signals of sEMG during non-fatiguing contractions.Result Statistical analyses revealed that AEMG and %DET were significantly higher at fatigue states than those at non fatigue states,while MPF and C(n)were significantly lower than those at non fatigue states.With the development of muscle fatigue,MPF and %DET significantly decreased during maximal effort,while AEMG and %DET stayed stable.The interaction of load level and fatigue state for AEMG,MPF and C(n)were significant.Conclusion MPF and C(n)significantly decrease during maximal voluntary isometric contractions.sEMG dynamics between fatigue state and non-fatigue state is significantly different.

Key concepts: Isometric exercise, Muscle fatigue, Biceps, Turnover, Physical medicine and rehabilitation, Electromyography, Biceps brachii muscle, Mathematics

Related papers

Back to paper searchBrowse research topicsOriginal source
sEMG Dynamics of Muscle Fatigue Induced by Maximal Voluntary Isometric Contractions — Research Paper | ScholarLens