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等长训练对人体肌腱结构体内弹性的影响。

Effects of isometric training on the elasticity of human tendon structures in vivo.

作者信息

Kubo K, Kanehisa H, Ito M, Fukunaga T

机构信息

Department of Life Science (Sports Sciences), University of Tokyo, Komaba 3-8-1, Meguro, Tokyo, Japan.

出版信息

J Appl Physiol (1985). 2001 Jul;91(1):26-32. doi: 10.1152/jappl.2001.91.1.26.

Abstract

The present study aimed to investigate the effect of isometric training on the elasticity of human tendon structures. Eight subjects completed 12 wk (4 days/wk) of isometric training that consisted of unilateral knee extension at 70% of maximal voluntary contraction (MVC) for 20 s per set (4 sets/day). Before and after training, the elongation of the tendon structures in the vastus lateralis muscle was directly measured using ultrasonography while the subjects performed ramp isometric knee extension up to MVC. The relationship between the estimated muscle force and tendon elongation (L) was fitted to a linear regression, the slope of which was defined as stiffness of the tendon structures. The training increased significantly the volume (7.6+/-4.3%) and MVC torque (33.9+/-14.4%) of quadriceps femoris muscle. The L values at force production levels beyond 550 N were significantly shorter after training. The stiffness increased significantly from 67.5+/-21.3 to 106.2+/-33.4 N/mm. Furthermore, the training significantly increased the rate of torque development (35.8 +/- 20.4%) and decreased electromechanical delay (-18.4+/-3.8%). Thus the present results indicate that isometric training increases the stiffness and Young's modulus of human tendon structures as well as muscle strength and size. This change in the tendon structures would be assumed to be an advantage for increasing the rate of torque development and shortening the electromechanical delay.

摘要

本研究旨在探讨等长训练对人体肌腱结构弹性的影响。八名受试者完成了为期12周(每周4天)的等长训练,训练内容为单膝伸展,强度为最大自主收缩(MVC)的70%,每组持续20秒(每天4组)。在训练前后,当受试者进行逐渐增加负荷至MVC的等长膝关节伸展时,使用超声直接测量股外侧肌肌腱结构的伸长情况。将估计的肌肉力量与肌腱伸长(L)之间的关系拟合为线性回归,其斜率定义为肌腱结构的刚度。训练显著增加了股四头肌的体积(7.6±4.3%)和MVC扭矩(33.9±14.4%)。训练后,在超过550 N的力产生水平下的L值显著缩短。刚度从67.5±21.3 N/mm显著增加到106.2±33.4 N/mm。此外,训练显著提高了扭矩发展速率(35.8±20.4%)并减少了机电延迟(-18.4±3.8%)。因此,目前的结果表明,等长训练可增加人体肌腱结构的刚度和杨氏模量以及肌肉力量和尺寸。肌腱结构的这种变化被认为有利于提高扭矩发展速率并缩短机电延迟。

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