Effects of plyometric training on both active and passive parts of the plantarflexors series elastic component stiffness of muscle-tendon complex

被引:75
作者
Foure, Alexandre [1 ]
Nordez, Antoine [1 ]
McNair, Peter [2 ]
Cornu, Christophe [1 ]
机构
[1] Univ Nantes, Lab Motr Interact Performance, UFR STAPS, EA 4334, F-44322 Nantes 3, France
[2] Auckland Univ Technol, Hlth & Rehabil Res Inst, Auckland 1, New Zealand
关键词
Stiffness; Cross-sectional area; Muscle architecture; Achilles Tendon; Jump training; FIBER-TYPE TRANSITION; ELECTROMECHANICAL DELAY; MECHANICAL-PROPERTIES; ACHILLES-TENDON; SOLEUS MUSCLE; MOVEMENT; EXERCISE; BEHAVIOR; WEIGHT;
D O I
10.1007/s00421-010-1667-4
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
The aims of this study were to determine the effects of plyometric training on both active and passive parts of the series elastic component (SEC) stiffness, and on geometrical parameters [i.e., muscle architecture, muscle and tendon cross-sectional area (CSA)] of the plantarflexors muscle-tendon complex to assess possible specific adaptations of the elastic properties. Nineteen subjects were randomly divided into a trained group and a control group. Active and passive components of the SEC stiffness were determined using a fast stretch during submaximal voluntary isometric plantarflexor activity. Geometrical parameters of the triceps surae muscles and the Achilles tendon were determined using ultrasonography. A significant increase in the passive component of the SEC stiffness was found (p < 0.05). In contrast, a significant decrease in the active part of the SEC stiffness was observed (p < 0.05). No significant changes in plantarflexor muscles CSA, architecture and Achilles tendon CSA were seen (p > 0.05). Thus, plyometric training led to specific adaptations within each part of the SEC. Theses adaptations could increase both the efficiency of the energy storage-recoil process and muscular tension transmission leading to an increase in jump performances.
引用
收藏
页码:539 / 548
页数:10
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