Literature DB >> 10737267

Electromyographic analysis of exercise resulting in symptoms of muscle damage.

M P McHugh1, D A Connolly, R G Eston, G W Gleim.   

Abstract

Surface electromyographic (EMG) signals were recorded from the hamstring muscles during six sets of submaximal isokinetic (2.6 rad x s(-1)) eccentric (11 men, 9 women) or concentric (6 men, 4 women) contractions. The EMG per unit torque increased during eccentric (P < 0.01) but not during concentric exercise. Similarly, the median frequency increased during eccentric (P < 0.01) but not during concentric exercise. The EMG per unit torque was lower for submaximal eccentric than maximum isometric contractions (P < 0.001), and lower for submaximal concentric than maximum isometric contractions (P < 0.01). The EMG per unit torque was lower for eccentric than concentric contractions (P < 0.05). The median frequency was higher for submaximal eccentric than maximum isometric contractions (P < 0.001); it was similar, however, between submaximal concentric and maximum isometric contractions (P = 0.07). Eccentric exercise resulted in significant isometric strength loss (P < 0.01), pain (P < 0.01) and muscle tenderness (P < 0.05). The greatest strength loss was seen 1 day after eccentric exercise, while the most severe pain and muscle tenderness occurred 2 days after eccentric exercise. A lower EMG per unit torque is consistent with the selective recruitment of a small number of motor units during eccentric exercise. A higher median frequency during eccentric contractions may be explained by selective recruitment of fast-twitch motor units. The present results are consistent with the theory that muscle damage results from excessive stress on a small number of active fibres during eccentric contractions.

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Year:  2000        PMID: 10737267     DOI: 10.1080/026404100365063

Source DB:  PubMed          Journal:  J Sports Sci        ISSN: 0264-0414            Impact factor:   3.337


  21 in total

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8.  Exercise-induced muscle damage and the repeated bout effect: evidence for cross transfer.

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9.  Testing knee extension and flexion strength at different ranges of motion: an isokinetic and electromyographic study.

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10.  Early explosive force reduction associated with exercise-induced muscle damage.

Authors:  D García-López; J A de Paz; R Jiménez-Jiménez; G Bresciani; F De Souza-Teixeira; J A Herrero; I Alvear-Ordenes; J González-Gallego
Journal:  J Physiol Biochem       Date:  2006-09       Impact factor: 4.158

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