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Published in: European Journal of Applied Physiology 2/2013

01-02-2013 | Original Article

Comparative and reliability studies of neuromechanical leg muscle performances of volleyball athletes in different divisions

Authors: Chi-Pang Un, Kwan-Hwa Lin, Tzyy-Yuang Shiang, En-Chung Chang, Sheng-Chu Su, Hsing-Kuo Wang

Published in: European Journal of Applied Physiology | Issue 2/2013

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Abstract

This study compared neural profiles of the leg muscles of volleyball athletes playing in different divisions of Taiwan’s national league to analyse the reliability and correlations between their profiles and biomechanical performances. Twenty-nine athletes including 12 and 17 from the first and second divisions of the league, respectively, were recruited. The outcome measures were compared between the divisions, including soleus H-reflex, first volitional (V) wave, normalised rate of electromyography (EMG) rise (RER) in the triceps surae muscles, and RER ratio for the tibialis anterior and soleus muscles, normalised root mean square (RMS) EMG in the triceps surae muscles, antagonist co-activation of the tibialis anterior muscle, rate of force development (RFD), and maximal plantar flexion torque and jump height. Compared to the results of the second division, the neural profiles of the first division showed greater normalised V waves, normalised RER in the lateral gastrocnemius, and normalised RMS EMG of the soleus and lateral gastrocnemius muscles with less antagonist co-activation of the tibialis anterior. First division volleyball athletes showed greater maximal torque, jump height, absolute RFD at 0–30, 0–100, and 0–200 ms, and less in the normalised RFD at 0–200 ms of plantar flexion when compared to the results of those in the second division. Neural profiles correlated to fast or maximal muscle strength or jump height. There are differences in the descending neural drive and activation strategies in leg muscles during contractions between volleyball athletes competing at different levels. These measures are reliable and correlate to biomechanical performances.
Literature
go back to reference Aagaard P, Simonsen EB, Andersen JL, Magnusson P, Dyhre-Poulsen P (2002a) Neural adaptation to resistance training: changes in evoked V-wave and H-reflex responses. J Appl Physiol 92:2309–2318PubMed Aagaard P, Simonsen EB, Andersen JL, Magnusson P, Dyhre-Poulsen P (2002a) Neural adaptation to resistance training: changes in evoked V-wave and H-reflex responses. J Appl Physiol 92:2309–2318PubMed
go back to reference Aagaard P, Simonsen EB, Andersen JL, Magnusson P, Dyhre-Poulsen P (2002b) Increased rate of force development and neural drive of human skeletal muscle following resistance training. J Appl Physiol 93:1318–1326PubMed Aagaard P, Simonsen EB, Andersen JL, Magnusson P, Dyhre-Poulsen P (2002b) Increased rate of force development and neural drive of human skeletal muscle following resistance training. J Appl Physiol 93:1318–1326PubMed
go back to reference Basmajian JV (1977) Motor learning and control: a working hypothesis. Arch Phys Med Rehabil 58:38–41PubMed Basmajian JV (1977) Motor learning and control: a working hypothesis. Arch Phys Med Rehabil 58:38–41PubMed
go back to reference Chimera NJ, Swanik KA, Swanik CB, Straub SJ (2004) Effects of plyometric training on muscle-activation strategies and performance in female athletes. J Athl Train 39:24–31PubMed Chimera NJ, Swanik KA, Swanik CB, Straub SJ (2004) Effects of plyometric training on muscle-activation strategies and performance in female athletes. J Athl Train 39:24–31PubMed
go back to reference Hagood S, Solomonow M, Baratta R, Zhou BH, D’Ambrosia R (1990) The effect of joint velocity on the contribution of the antagonist musculature to knee stiffness and laxity. Am J Sports Med 18:182–187PubMedCrossRef Hagood S, Solomonow M, Baratta R, Zhou BH, D’Ambrosia R (1990) The effect of joint velocity on the contribution of the antagonist musculature to knee stiffness and laxity. Am J Sports Med 18:182–187PubMedCrossRef
go back to reference Harridge SD, Bottinelli R, Canepari M, Pellegrino MA, Reggiani C, Esbjörnsson M, Saltin B (1996) Whole-muscle and single-fibre contractile properties and myosin heavy chain isoforms in humans. Pflugers Arch 432:913–920PubMedCrossRef Harridge SD, Bottinelli R, Canepari M, Pellegrino MA, Reggiani C, Esbjörnsson M, Saltin B (1996) Whole-muscle and single-fibre contractile properties and myosin heavy chain isoforms in humans. Pflugers Arch 432:913–920PubMedCrossRef
go back to reference Kawakami Y, Ichinose Y, Fukunaga T (1998) Architectural and functional features of human triceps surae muscles during contraction. J Appl Physiol 85:398–404PubMed Kawakami Y, Ichinose Y, Fukunaga T (1998) Architectural and functional features of human triceps surae muscles during contraction. J Appl Physiol 85:398–404PubMed
go back to reference Lepers R, Millet GY, Maffiuletti NA (2001) Effect of cycling cadence on contractile and neural properties of knee extensors. Med Sci Sports Exerc 33:1882–1888PubMedCrossRef Lepers R, Millet GY, Maffiuletti NA (2001) Effect of cycling cadence on contractile and neural properties of knee extensors. Med Sci Sports Exerc 33:1882–1888PubMedCrossRef
go back to reference Maffiuletti NA, Pensini M, Martin A (2002) Activation of human plantar flexor muscles increases after electromyostimulation training. J Appl Physiol 92:1383–1392PubMed Maffiuletti NA, Pensini M, Martin A (2002) Activation of human plantar flexor muscles increases after electromyostimulation training. J Appl Physiol 92:1383–1392PubMed
go back to reference Masci I, Vannozzi G, Gizzi L, Bellotti P, Felici F (2010) Neuromechanical evidence of improved neuromuscular control around knee joint in volleyball players. Eur J Appl Physiol 108:443–450PubMedCrossRef Masci I, Vannozzi G, Gizzi L, Bellotti P, Felici F (2010) Neuromechanical evidence of improved neuromuscular control around knee joint in volleyball players. Eur J Appl Physiol 108:443–450PubMedCrossRef
go back to reference Reeves ND, Narici MV, Maganaris CN (2003) Strength training alters the viscoelastic properties of tendons in elderly humans. Muscle Nerve 28:74–81PubMedCrossRef Reeves ND, Narici MV, Maganaris CN (2003) Strength training alters the viscoelastic properties of tendons in elderly humans. Muscle Nerve 28:74–81PubMedCrossRef
go back to reference Wang HK, Lin KH, Wu YK, Chi SC, Shih TT, Huang YC (2011) Evoked spinal reflexes and force development in elite athletes with middle portion Achilles tendinopathy. J Orthop Sports Phys Ther 41:785–794. doi:10.2519/jospt.2011.3564 PubMed Wang HK, Lin KH, Wu YK, Chi SC, Shih TT, Huang YC (2011) Evoked spinal reflexes and force development in elite athletes with middle portion Achilles tendinopathy. J Orthop Sports Phys Ther 41:785–794. doi:10.​2519/​jospt.​2011.​3564 PubMed
go back to reference Wickiewicz TL, Roy RR, Powell PL, Edgerton VR (1983) Muscle architecture of the human lower limb. Clin Orthop 179:275–283PubMed Wickiewicz TL, Roy RR, Powell PL, Edgerton VR (1983) Muscle architecture of the human lower limb. Clin Orthop 179:275–283PubMed
Metadata
Title
Comparative and reliability studies of neuromechanical leg muscle performances of volleyball athletes in different divisions
Authors
Chi-Pang Un
Kwan-Hwa Lin
Tzyy-Yuang Shiang
En-Chung Chang
Sheng-Chu Su
Hsing-Kuo Wang
Publication date
01-02-2013
Publisher
Springer-Verlag
Published in
European Journal of Applied Physiology / Issue 2/2013
Print ISSN: 1439-6319
Electronic ISSN: 1439-6327
DOI
https://doi.org/10.1007/s00421-012-2454-1

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