The impact of whole body vibrations (vibration stimulus mechanically transferred to the body) on muscular activity and neuromuscular response has been widely studied but without standard protocol and by using different kinds of exercises and parameters. In this study, we investigated how whole body vibration treatments affect electromyographic signal of rectus femoris during static and dynamic squat exercises. The aim was the identification of squat exercise characteristics useful to maximize neuromuscular activation and hence progress in training efficacy. Fourteen healthy volunteers performed both static and dynamic squat exercises without and with vibration treatments. Surface electromyographic signals of rectus femoris were recorded during the whole exercise and processed to reduce artifacts and to extract root mean square values. Paired t-test results demonstrated an increase of the root mean square values (p<0.05) in both static and dynamic squat exercises with vibrations respectively of 63% and 108%. For each exercise, subjects gave a rating of the perceived exertion according to the Borg's scale but there were no significant changes in the perceived exertion rate between exercises with and without vibration. Finally, results from analysis of electromyographic signals identified the static squat with WBV treatment as the exercise with higher neuromuscular system response

Neuromuscular response to whole body vibration treatment during static and dynamic squat exercises / Cesarelli, Mario; Di Iorio, F; Bifulco, Paolo; Clemente, F; Fratini, Antonio; Ruffo, M.. - ELETTRONICO. - (2012), pp. 6226648.167-6226648.170. (Intervento presentato al convegno 2012 IEEE Symposium on Medical Measurements and Applications, MeMeA 2012 tenutosi a Budapest; Hungary nel 18-19 May 2012) [10.1109/MeMeA.2012.6226648].

Neuromuscular response to whole body vibration treatment during static and dynamic squat exercises

CESARELLI, MARIO;BIFULCO, PAOLO;FRATINI, Antonio;
2012

Abstract

The impact of whole body vibrations (vibration stimulus mechanically transferred to the body) on muscular activity and neuromuscular response has been widely studied but without standard protocol and by using different kinds of exercises and parameters. In this study, we investigated how whole body vibration treatments affect electromyographic signal of rectus femoris during static and dynamic squat exercises. The aim was the identification of squat exercise characteristics useful to maximize neuromuscular activation and hence progress in training efficacy. Fourteen healthy volunteers performed both static and dynamic squat exercises without and with vibration treatments. Surface electromyographic signals of rectus femoris were recorded during the whole exercise and processed to reduce artifacts and to extract root mean square values. Paired t-test results demonstrated an increase of the root mean square values (p<0.05) in both static and dynamic squat exercises with vibrations respectively of 63% and 108%. For each exercise, subjects gave a rating of the perceived exertion according to the Borg's scale but there were no significant changes in the perceived exertion rate between exercises with and without vibration. Finally, results from analysis of electromyographic signals identified the static squat with WBV treatment as the exercise with higher neuromuscular system response
2012
9781467308816
Neuromuscular response to whole body vibration treatment during static and dynamic squat exercises / Cesarelli, Mario; Di Iorio, F; Bifulco, Paolo; Clemente, F; Fratini, Antonio; Ruffo, M.. - ELETTRONICO. - (2012), pp. 6226648.167-6226648.170. (Intervento presentato al convegno 2012 IEEE Symposium on Medical Measurements and Applications, MeMeA 2012 tenutosi a Budapest; Hungary nel 18-19 May 2012) [10.1109/MeMeA.2012.6226648].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/563925
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