Faculty of Sport Sciences, Waseda University, Tokyo, Japan.
Japan Society for the Promotion of Science, Tokyo, Japan.
PLoS One. 2021 May 19;16(5):e0251939. doi: 10.1371/journal.pone.0251939. eCollection 2021.
The main aim was to examine the load bearing of individual hamstring muscles in different contraction types and intensities, through local stiffness measurement by shear wave elastography (SWE). A secondary aim was to examine the relationship between the SWE stiffness measure and hamstrings morphology. Ten healthy males (age 22.1±4.1 years; height 173.7±5.9 cm; body mass 68.6±12.4 kg; mean ± SD) performed knee flexions on an isokinetic dynamometer at different intensities (20-70%MVC, random order) in three separate, randomized conditions: isometric (ISO), concentric (CON) and eccentric (ECC). SWE was used to measure muscle shear wave velocity (SWV) in biceps femoris long head (BFlh), semitendinosus (ST) and semimembranosus (SM) during contraction. Muscle anatomical cross-sectional area (ACSA) was measured with magnetic resonance imaging and muscle architecture with B-mode ultrasonography. Muscle SWV increased linearly with contraction intensity, but at a varying rate among muscles and contraction types. ST exhibited greater SWV than BFlh and SM in all contraction types, however, there was an upward shift in the SM SWV-torque relationship in ECC compared to ISO and CON. Strong negative correlations were found between peak ISO SWV and ST ACSA (r = -0.81, p = 0.005) and BFlh pennation angle (r = -0.75, p = 0.012). These results suggest that ST has a primary role in hamstrings load bearing in all contraction types, likely due to its morphology; however, there is evidence of increased contribution from SM in eccentric muscle actions.
目的是通过剪切波弹性成像(SWE)测量局部刚度,检查不同收缩类型和强度下各个腘绳肌的承载能力。次要目的是检查 SWE 刚度测量值与腘绳肌形态之间的关系。10 名健康男性(年龄 22.1±4.1 岁;身高 173.7±5.9cm;体重 68.6±12.4kg;均值±标准差)在等速测力机上以不同强度(20-70%MVC,随机顺序)进行膝关节屈曲运动,分为 3 个单独的随机条件:等长(ISO)、向心(CON)和离心(ECC)。在收缩过程中,使用 SWE 测量股二头肌长头(BFlh)、半腱肌(ST)和半膜肌(SM)的肌肉剪切波速度(SWV)。使用磁共振成像测量肌肉解剖横截面积(ACSA),使用 B 型超声测量肌肉结构。肌肉 SWV 随收缩强度线性增加,但在不同肌肉和收缩类型之间的增加速度不同。在所有收缩类型中,ST 的 SWV 均大于 BFlh 和 SM,但与 ISO 和 CON 相比,ECC 中 SM 的 SWV-扭矩关系向上移动。在 ISO 时的峰值 SWV 与 ST ACSA(r = -0.81,p = 0.005)和 BFlh 羽肌角度(r = -0.75,p = 0.012)呈强烈负相关。这些结果表明,ST 在所有收缩类型中均在腘绳肌承重中起主要作用,这可能与其形态有关;但是,在离心肌肉运动中,SM 的贡献增加。