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离心运动对腘绳肌被动刚度的影响:剪切波弹性成像与被动膝关节扭矩结果的比较。

The effects of eccentric exercise on passive hamstring muscle stiffness: Comparison of shear-wave elastography and passive knee torque outcomes.

作者信息

Voglar Matej, Vatovec Rok, Kozinc Žiga, Šarabon Nejc

机构信息

University of Primorska, Faculty of Health Sciences, Izola.

University of Primorska, Faculty of Health Sciences, Izola, Slovenia; University of Primorska, Andrej Marušič Institute, Koper.

出版信息

Eur J Transl Myol. 2022 Jun 6;32(2):10567. doi: 10.4081/ejtm.2022.10567.

Abstract

The aim of our study was to assess eccentric-exercise-induced changes in passive knee joint torque, passive knee joint stiffness and shear modulus at of the hamstring muscles. We hypothesized that eccentric exercise would elicit an increase in all outcomes. Fourteen healthy volunteers (age = 25.5±4.7 years) performed eccentric exercise protocol. Before and after 0h, 1h, 24h and 48h, we measured the shear modulus of hamstring muscles using shear-wave elastography and passive knee joint stiffness on isokinetic dynamometer. After eccentric exercise, the shear modulus of biceps femoris increased after 0h (22.4 ± 34.1 %; p = 0.021) and for semitendinosus after 0h (14.5 ± 4.9 %), 1h (16.2 ± 6.5 %) and 24h (16.6 ± 8.3 %) (p = 0.005-0.015). There were no changes for semimembranosus and no changes in passive knee joint moment measures. There were also no correlations between the two methods. Eccentric exercise increased shear modulus of hamstring muscles, while passive joint torque was not affected. This suggests that shear-wave elastography could be more sensitive than torque measures to intra-muscular changes induced by eccentric exercise.

摘要

我们研究的目的是评估离心运动引起的腘绳肌被动膝关节扭矩、被动膝关节刚度和剪切模量的变化。我们假设离心运动会使所有指标增加。14名健康志愿者(年龄=25.5±4.7岁)进行了离心运动方案。在0小时、1小时、24小时和48小时前后,我们使用剪切波弹性成像测量腘绳肌的剪切模量,并在等速测力计上测量被动膝关节刚度。离心运动后,股二头肌的剪切模量在0小时后增加(22.4±34.1%;p=0.021),半腱肌在0小时后(14.5±4.9%)、1小时后(16.2±6.5%)和24小时后(16.6±8.3%)增加(p=0.005 - 0.015)。半膜肌无变化,被动膝关节力矩测量也无变化。两种方法之间也没有相关性。离心运动增加了腘绳肌的剪切模量,而被动关节扭矩未受影响。这表明剪切波弹性成像可能比扭矩测量对离心运动引起的肌肉内变化更敏感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e3d1/9295161/c825769ae7b4/ejtm-32-2-10567-g001.jpg

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