Lévenéz Morgan, Moeremans Matthieu, Booghs Cédric, Vigouroux Florent, Leveque Clément, Hemelryck Walter, Balestra Costantino
Environmental, Occupational, Aging (Integrative) Physiology Laboratory, Haute Ecole Bruxelles-Brabant (HE2B), 1160 Brussels, Belgium.
Anatomical Research and Clinical Studies, Vrije Universiteit Brussel, 1090 Brussels, Belgium.
Sports (Basel). 2023 Mar 27;11(4):73. doi: 10.3390/sports11040073.
We investigated the effects of intermittent long-term stretch training (5 weeks) on the architectural and mechanical properties of the muscle-tendon unit (MTU) in healthy humans. MTU's viscoelastic and architectural properties in the human medial gastrocnemius (MG) muscle and the contribution of muscle and tendon structures to the MTU lengthening were analyzed. Ten healthy volunteers participated in the study (four females and six males). The passive stretch of the plantar flexor muscles was achieved from 0° (neutral ankle position) to 25° of dorsiflexion. Measurements were obtained during a single passive stretch before and after the completion of the stretching protocol. During the stretch, the architectural parameters of the MG muscle were measured via ultrasonography, and the passive torque was recorded by means of a strain-gauge transducer. Repeated-measure ANOVA was applied for all parameters. When expressed as a percentage for all dorsiflexion angles, the relative torque values decreased ( < 0.001). In the same way, architectural parameters (pennation angle and fascicle length) were compared for covariance and showed a significant difference between the slopes (ANCOVA < 0.0001 and < 0.001, respectively) suggesting a modification in the mechanical behavior after stretch training. Furthermore, the values for passive stiffness decreased ( < 0.05). The maximum ankle range of motion (ROM) ( < 0.01) and the maximum passive torque ( < 0.05) increased. Lastly, the contribution of the free tendon increased more than fascicle elongation to the total lengthening of the MTU (ANCOVA < 0.001). Our results suggest that five weeks of intermittent static stretch training significantly change the behavior of the MTU. Specifically, it can increase flexibility and increase tendon contribution during MTU lengthening.
我们研究了间歇性长期拉伸训练(5周)对健康人体肌肉-肌腱单元(MTU)的结构和力学特性的影响。分析了人体内侧腓肠肌(MG)中MTU的粘弹性和结构特性,以及肌肉和肌腱结构对MTU延长的贡献。10名健康志愿者参与了该研究(4名女性和6名男性)。跖屈肌的被动拉伸从0°(踝关节中立位)到背屈25°。在拉伸方案完成前后的单次被动拉伸过程中进行测量。在拉伸过程中,通过超声测量MG肌肉的结构参数,并通过应变片传感器记录被动扭矩。对所有参数应用重复测量方差分析。当以所有背屈角度的百分比表示时,相对扭矩值下降(<0.001)。同样,对结构参数(羽状角和肌束长度)进行协方差比较,结果显示斜率之间存在显著差异(协方差分析分别为<0.0001和<0.001),表明拉伸训练后力学行为发生了改变。此外,被动刚度值下降(<0.05)。最大踝关节活动范围(ROM)(<0.01)和最大被动扭矩(<0.05)增加。最后,游离肌腱对MTU总延长的贡献比对肌束伸长的贡献增加得更多(协方差分析<0.001)。我们的结果表明,五周的间歇性静态拉伸训练显著改变了MTU的行为。具体而言,它可以增加灵活性,并增加MTU延长过程中肌腱的贡献。