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腘绳肌内被动肌肉僵硬的非均匀分布。

Non-uniform distribution of passive muscle stiffness within hamstring.

机构信息

Graduate School of Health and Sports Science, Juntendo University, Inzai, Japan.

National Institute of Fitness and Sports in Kanoya, Kagoshima, Japan.

出版信息

Scand J Med Sci Sports. 2020 Sep;30(9):1729-1738. doi: 10.1111/sms.13732. Epub 2020 Jun 15.

Abstract

Limited information is available on whether stiffness is different within and between the constituents of the hamstring, that is, the biceps femoris long head (BFlh), semitendinosus (ST), and semimembranosus (SM). Therefore, understanding of hamstring injuries and stretching effect on hamstring stiffness is difficult. The present study primarily aimed to identify whether passive muscle stiffness differs between the BFlh, ST, and SM and between the proximal, middle, and distal sites within each muscle. Secondly, the effect of stretching exercise on the heterogeneity in passive muscle stiffness was examined. In the lengthened hamstring positions by extending the knee joint or flexing the hip joint, passive muscle shear modulus (a measure of stiffness) at the proximal, middle, and distal sites of the BFlh, ST, and SM was measured by using ultrasound shear wave elastography. Furthermore, before and after five repetitions of 90-seconds static stretching for the hamstring, passive muscle shear modulus at the proximal and distal sites of the SM was measured. The shear modulus was significantly higher in the SM than in the BFlh and ST and higher at the distal site than the proximal site in all muscles. After the stretching, the higher shear modulus at the distal site of the SM compared to the proximal site was still observed (pre-stretching: +80%, post-stretching: +81%). These findings indicate that passive muscle stiffness varies within the hamstring regardless of performing stretching exercise and that passive muscle stiffness is not highest at the proximal site of the SM where a stretching-type hamstring strain typically occurs.

摘要

关于腘绳肌的各组成部分(即股二头肌长头(BFlh)、半腱肌(ST)和半膜肌(SM))之间以及内部的僵硬程度是否存在差异,目前相关信息有限。因此,很难理解腘绳肌损伤以及伸展对腘绳肌僵硬的影响。本研究主要目的是确定 BFlh、ST 和 SM 之间以及每个肌肉的近端、中间和远端部位之间的被动肌肉僵硬是否存在差异。其次,研究了伸展运动对被动肌肉僵硬异质性的影响。在膝关节伸展或髋关节弯曲延长腘绳肌的位置,使用超声剪切波弹性成像测量 BFlh、ST 和 SM 的近端、中间和远端部位的被动肌肉剪切模量(僵硬程度的一种衡量指标)。此外,在对腘绳肌进行 5 次 90 秒的静态伸展之前和之后,测量 SM 的近端和远端部位的被动肌肉剪切模量。结果显示,SM 的剪切模量明显高于 BFlh 和 ST,并且在所有肌肉中,远端部位的剪切模量均高于近端部位。伸展后,SM 的远端部位的剪切模量仍高于近端部位(伸展前:+80%,伸展后:+81%)。这些发现表明,无论是否进行伸展运动,腘绳肌内部的被动肌肉僵硬程度都存在差异,而且在伸展型腘绳肌拉伤通常发生的 SM 近端部位,被动肌肉僵硬程度并非最高。

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