2018Informatics in Medicine UnlockedOpen access

Surface electromyography based method for computing muscle strength and fatigue of biceps brachii muscle and its clinical implementation

Chetan Kuthe, Rashmi Uddanwadiker, Alankar Ramteke

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Abstract

The main objective of the present study is to compute muscle strength in terms of muscle force and fatigue for biceps brachii, using trained and untrained subjects in static contraction (isometric contraction). There are two groups of 14 subjects each as trained subjects and untrained subjects. An isometric contraction is performed by two groups at three submaximal contraction levels L1 (50% MVC), L2 (75% MVC) and L3 (100% MVC) for 60 s each or until task failure, whichever comes first. The study compared the strength of the two groups based on maximal isometric muscle force and state of muscle fatigue using the slope of median frequency (MDF). It was found that there was an 18.39% increase in the biceps brachii muscle strength for trained subjects as compared with untrained (P < 0.05), and the difference in the value of MDF between trained and untrained subjects was 1.36% at L1, 3.48% at L2 and 6.17% at L3. The untrained group showed a more negative slope (−0.2470) as compared to the trained group (−0.2155). The proposed method is clinically validated on total knee replaced patients with their consent. The method is used to monitor the muscle strength and for prognosis of muscle fatigue in isometric contraction.

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What this paper is about

The main objective of the present study is to compute muscle strength in terms of muscle force and fatigue for biceps brachii, using trained and untrained subjects in static contraction (isometric contraction). There are two groups of 14 subjects each as trained subjects and untrained subjects. An isometric contraction is performed by two groups at three submaximal contraction levels L1 (50% MVC), L2 (75% MVC) and L3 (100% MVC) for 60 s each or until task failure, whichever comes first. The study compared the strength of the two groups based on maximal isometric muscle force and state of muscle fatigue using the slope of median frequency (MDF). It was found that there was an 18.39% increase in the biceps brachii muscle strength for trained subjects as compared with untrained (P < 0.05), and the difference in the value of MDF between trained and untrained subjects was 1.36% at L1, 3.48% at L2 and 6.17% at L3. The untrained group showed a more negative slope (−0.2470) as compared to the trained group (−0.2155). The proposed method is clinically validated on total knee replaced patients with their consent. The method is used to monitor the muscle strength and for prognosis of muscle fatigue in isometric contraction.

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Available abstract

The main objective of the present study is to compute muscle strength in terms of muscle force and fatigue for biceps brachii, using trained and untrained subjects in static contraction (isometric contraction). There are two groups of 14 subjects each as trained subjects and untrained subjects. An isometric contraction is performed by two groups at three submaximal contraction levels L1 (50% MVC), L2 (75% MVC) and L3 (100% MVC) for 60 s each or until task failure, whichever comes first. The study compared the strength of the two groups based on maximal isometric muscle force and state of muscle fatigue using the slope of median frequency (MDF). It was found that there was an 18.39% increase in the biceps brachii muscle strength for trained subjects as compared with untrained (P < 0.05), and the difference in the value of MDF between trained and untrained subjects was 1.36% at L1, 3.48% at L2 and 6.17% at L3. The untrained group showed a more negative slope (−0.2470) as compared to the trained group (−0.2155). The proposed method is clinically validated on total knee replaced patients with their consent. The method is used to monitor the muscle strength and for prognosis of muscle fatigue in isometric contraction.

Key concepts: Isometric exercise, Biceps, Biceps brachii muscle, Electromyography, Medicine, Muscle fatigue, Physical medicine and rehabilitation, Contraction (grammar)

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Surface electromyography based method for computing muscle strength and fatigue of biceps brachii muscle and its clinical implementation — Research Paper | ScholarLens