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拉伸对小腿三头肌复合体神经力学特性的急性影响。

Acute effects of stretching on the neuromechanical properties of the triceps surae muscle complex.

作者信息

Cornwell Andrew, Nelson Arnold G, Sidaway Ben

机构信息

Department of Kinesiology and Physical Education, California State University, Los Angeles, 5151 State University Drive, Los Angeles, CA 90032, USA.

出版信息

Eur J Appl Physiol. 2002 Mar;86(5):428-34. doi: 10.1007/s00421-001-0565-1. Epub 2002 Feb 5.

Abstract

Previous research has shown that an acute bout of passive muscle stretching can diminish performance in certain movements where success is a function of maximal force and/or power output. Two possible mechanisms that might account for such findings are a change in active musculotendinous stiffness and a depression of muscle activation. To investigate the likelihood of these two mechanisms contributing to a post-stretch reduction in performance, we examined the acute effects of stretching on the active stiffness and muscle activation of the triceps surae muscle group during maximal single-joint jumps with movement restricted to the ankle joint. Ten males performed both static (SJ) and countermovement (CMJ) jumps before and after passively stretching the triceps surae. Electrical activity of the triceps surae during each jump was determined by integrating electromyographic recordings (IEMG) over the course of the movement. Triceps surae musculotendinous stiffness was calculated before and after stretching using a technique developed by Cavagna (1970). Following stretching, a significant decrease [mean (SD) 7.4 (1.9)%; P<0.05] in jump height for the CMJ occurred, but for the SJ, no significant ( P>0.05) change in jump height was found. A small but significant decrease [2.8 (1.24)%; P<0.05] in stiffness was noted, but the magnitude of this change was probably not sufficient for it to have been a major factor underlying the decline in CMJ performance. Paradoxically, after stretching, the SJ exhibited a significant ( P<0.05) decrease in IEMG, but the IEMG for the CMJ remained unchanged ( P>0.05). It appears that an acute bout of stretching can impact negatively upon the performance of a single-joint CMJ, but it is unlikely that the mechanism responsible is a depression of muscle activation or a change in musculotendinous stiffness.

摘要

先前的研究表明,一次急性的被动肌肉拉伸会降低某些动作的表现,在这些动作中,成功与否取决于最大力量和/或功率输出。可能解释这些发现的两种机制是主动肌肉肌腱僵硬度的变化和肌肉激活的抑制。为了研究这两种机制导致拉伸后表现下降的可能性,我们在踝关节受限的最大单关节跳跃过程中,研究了拉伸对腓肠肌肌群主动僵硬度和肌肉激活的急性影响。10名男性在被动拉伸腓肠肌之前和之后进行了静态(SJ)和反向运动(CMJ)跳跃。通过在运动过程中整合肌电图记录(IEMG)来确定每次跳跃时腓肠肌的电活动。使用卡瓦尼亚(1970年)开发的技术计算拉伸前后的腓肠肌肌腱僵硬度。拉伸后,CMJ的跳跃高度显著下降[平均(标准差)7.4(1.9)%;P<0.05],但对于SJ,跳跃高度没有显著变化(P>0.05)。僵硬度有小幅但显著的下降[2.8(1.24)%;P<0.05],但这种变化的幅度可能不足以使其成为CMJ表现下降的主要因素。矛盾的是,拉伸后,SJ的IEMG显著下降(P<0.05),但CMJ的IEMG保持不变(P>0.05)。看来一次急性拉伸会对单关节CMJ的表现产生负面影响,但负责的机制不太可能是肌肉激活的抑制或肌肉肌腱僵硬度的变化。

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