Literature DB >> 19398350

Non-invasive assessment of muscle fiber conduction velocity during an incremental maximal cycling test.

Paola Sbriccoli1, Massimo Sacchetti, Francesco Felici, Leonardo Gizzi, Mauro Lenti, Alessandro Scotto, Giuseppe De Vito.   

Abstract

Muscle fiber conduction velocity (MFCV) gives critical information on neuromuscular control and can be considered a size principle parameter, being suggestive of motor unit recruitment strategies. MFCV has been recently measured during constant-load sub-maximal cycling exercise and was found to correlate positively with percentage of type I myosin heavy chain. The aim of this study was to test the hypothesis that MFCV measured during an incremental cycling test using surface electromyography (sEMG), can be sensitive to the different metabolic requests elicited by the exercise. In particular, the relationship between ventilatory threshold (T-vent), V(')O(2max) and MFCV was explored. Eleven male physically active subjects (age 30+/-9 years) undertook a 1-min incremental cycling test to exhaustion. T-vent and V(')O(2max) were measured using an open circuit breath by breath gas analyzer. The sEMG was recorded from the vastus lateralis muscle with an adhesive 4-electrodes array, and the MFCV was computed on each sEMG burst over the last 30-s of each step. The mean V(')O(2max) obtained during the maximal test was 53.32+/-2.33 ml kg(-1) min(-1), and the T-vent was reached at 80.77+/-3.49% of V(')O(2max). In all subjects reliable measures of MFCV were obtained at every exercise intensity (cross correlation values >0.8). MFCV increased linearly with the mechanical load, reaching a maximum value of 4.28+/-0.67 ms(-1) at an intensity corresponding to the T-vent. Thereafter, MFCV declined until maximal work intensities. This study demonstrates that MFCV can be used as non-invasive tool to infer MUs recruitment/derecruitment strategies even during dynamic exercise from low to maximal intensities.

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Year:  2009        PMID: 19398350     DOI: 10.1016/j.jelekin.2009.03.008

Source DB:  PubMed          Journal:  J Electromyogr Kinesiol        ISSN: 1050-6411            Impact factor:   2.368


  7 in total

1.  Neuromuscular control adaptations in elite athletes: the case of top level karateka.

Authors:  Paola Sbriccoli; Valentina Camomilla; Alberto Di Mario; Federico Quinzi; Francesco Figura; Francesco Felici
Journal:  Eur J Appl Physiol       Date:  2009-12-29       Impact factor: 3.078

2.  Limitations of Spectral Electromyogramic Analysis to Determine the Onset of Neuromuscular Fatigue Threshold during Incremental Ergometer Cycling.

Authors:  Iban Latasa; Alfredo Cordova; Armando Malanda; Javier Navallas; Ana Lavilla-Oiz; Javier Rodriguez-Falces
Journal:  J Sports Sci Med       Date:  2016-02-23       Impact factor: 2.988

3.  Unchanged muscle fiber conduction velocity relates to mild acidosis during exhaustive bicycling.

Authors:  J P J Schmitz; J P van Dijk; P A J Hilbers; K Nicolay; J A L Jeneson; D F Stegeman
Journal:  Eur J Appl Physiol       Date:  2011-08-23       Impact factor: 3.078

4.  Agonist and antagonist muscle activation in elite athletes: influence of age.

Authors:  Federico Quinzi; Valentina Camomilla; Francesco Felici; Alberto Di Mario; Paola Sbriccoli
Journal:  Eur J Appl Physiol       Date:  2014-09-06       Impact factor: 3.078

5.  Field Programmable Gate Array-Embedded Platform for Dynamic Muscle Fiber Conduction Velocity Monitoring.

Authors:  Daniela De Venuto; Giovanni Mezzina
Journal:  Sensors (Basel)       Date:  2019-10-22       Impact factor: 3.576

6.  Variations in Muscle Activity and Exerted Torque During Temporary Blood Flow Restriction in Healthy Individuals.

Authors:  Leonardo Gizzi; Utku Ş Yavuz; Dominic Hillerkuss; Tommaso Geri; Elena Gneiting; Franziska Domeier; Syn Schmitt; Oliver Röhrle
Journal:  Front Bioeng Biotechnol       Date:  2021-03-19

7.  Analysis and Biophysics of Surface EMG for Physiotherapists and Kinesiologists: Toward a Common Language With Rehabilitation Engineers.

Authors:  Lara McManus; Giuseppe De Vito; Madeleine M Lowery
Journal:  Front Neurol       Date:  2020-10-15       Impact factor: 4.003

  7 in total

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