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拉伸动作中人类骨骼肌的被动特性。综述。

Passive properties of human skeletal muscle during stretch maneuvers. A review.

作者信息

Magnusson S P

机构信息

Team Danmark Test Center/Sports Medicine Research Unit, Bispebjerg Hospital, Copenhagen, Denmark.

出版信息

Scand J Med Sci Sports. 1998 Apr;8(2):65-77. doi: 10.1111/j.1600-0838.1998.tb00171.x.

Abstract

Despite limited scientific knowledge, stretching of human skeletal muscle to improve flexibility is a widespread practice among athletes. This article reviews recent findings regarding passive properties of the hamstring muscle group during stretch based on a model that was developed which could synchronously and continuously measure passive hamstring resistance and electromyographic activity, while the velocity and angle of stretch was controlled. Resistance to stretch was defined as passive torque (Nm) offered by the hamstring muscle group during passive knee extension using an isokinetic dynamometer with a modified thigh pad. To simulate a clinical static stretch, the knee was passively extended to a pre-determined final position (0.0875 rad/s, dynamic phase) where it remained stationary for 90 s (static phase). Alternatively, the knee was extended to the point of discomfort (stretch tolerance). From the torque-angle curve of the dynamic phase of the static stretch, and in the stretch tolerance protocol, passive energy and stiffness were calculated. Torque decline in the static phase was considered to represent viscoelastic stress relaxation. Using the model, studies were conducted which demonstrated that a single static stretch resulted in a 30% viscoelastic stress relaxation. With repeated stretches muscle stiffness declined, but returned to baseline values within 1 h. Long-term stretching (3 weeks) increased joint range of motion as a result of a change in stretch tolerance rather than in the passive properties. Strength training resulted in increased muscle stiffness, which was unaffected by daily stretching. The effectiveness of different stretching techniques was attributed to a change in stretch tolerance rather than passive properties. Inflexible and older subjects have increased muscle stiffness, but a lower stretch tolerance compared to subjects with normal flexibility and younger subjects, respectively. Although far from all questions regarding the passive properties of humans skeletal muscle have been answered in these studies, the measurement technique permitted some initial important examinations of vicoelastic behavior of human skeletal muscle.

摘要

尽管科学知识有限,但通过拉伸人体骨骼肌来提高柔韧性在运动员中是一种普遍的做法。本文基于一个开发的模型,回顾了近期关于腘绳肌群在拉伸过程中被动特性的研究结果,该模型能够在控制拉伸速度和角度的同时,同步连续地测量腘绳肌的被动阻力和肌电图活动。拉伸阻力被定义为使用带有改良大腿垫的等速测力计在被动膝关节伸展过程中腘绳肌群提供的被动扭矩(Nm)。为了模拟临床静态拉伸,膝关节被动伸展至预定的最终位置(0.0875弧度/秒,动态阶段),并在该位置保持静止90秒(静态阶段)。或者,将膝关节伸展至不适点(拉伸耐受度)。根据静态拉伸动态阶段的扭矩-角度曲线以及拉伸耐受度方案,计算被动能量和刚度。静态阶段的扭矩下降被认为代表粘弹性应力松弛。使用该模型进行的研究表明,单次静态拉伸会导致30%的粘弹性应力松弛。随着重复拉伸,肌肉刚度下降,但在1小时内恢复到基线值。长期拉伸(3周)由于拉伸耐受度的变化而非被动特性的改变,增加了关节活动范围。力量训练导致肌肉刚度增加,且不受日常拉伸的影响。不同拉伸技术的有效性归因于拉伸耐受度的变化而非被动特性。与柔韧性正常的受试者和年轻受试者相比,不灵活的受试者和老年受试者的肌肉刚度增加,但拉伸耐受度较低。尽管这些研究远未回答所有关于人类骨骼肌被动特性的问题,但该测量技术允许对人类骨骼肌的粘弹性行为进行一些初步的重要研究。

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