Selective Static Stretching of Rectus Femoris Alters Motor Unit Firing Behaviors of Knee Extensors.

IF 3.5 2区 医学 Q1 SPORT SCIENCES
Tetsuya Hirono, Masahide Yagi, Zimin Wang, Haruka Sakata, Shogo Okada, Kaede Nakazato, Noriaki Ichihashi, Kohei Watanabe
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Abstract

Static stretching immediately affects various neuromusculoskeletal components. Among quadriceps muscles, only the rectus femoris (RF) is stretched by hip extension and knee flexion. The aim of this study was to investigate the motor unit (MU) firing behaviors of two synergistic muscles after selective static stretching on only one side. Fourteen males (23.7 ± 2.4 years) performed knee extension tasks before and after the intervention: static stretching or control conditions. The static stretching protocol consisted of passive hip joint extension and knee joint flexion as selective stretching of the RF for 1 min, repeated for 6 sets, while a 6-min rest was applied as the control condition. MU firings of RF and the vastus lateralis (VL) were detected using high-density surface electromyography, and the MU recruitment threshold and firing rate were calculated during ramp-up contraction to 35% of maximal voluntary contraction. RF stiffness, evaluated by shear wave elastography, was significantly reduced after static stretching, and not VL stiffness (interaction: p = 0.037). There were main effects of time, but no interaction in the MU recruitment threshold of RF (p = 0.282), firing rates of either muscle (RF: p = 0.363, VL: p = 0.557), or maximal strength (p = 0.362), suggesting that these variables were changed after both conditions. However, an interaction was noted in the recruitment threshold of VL (p = 0.018), indicating that the decline in recruitment threshold of VL was greater in the static stretching (from 24.9 ± 6.3 to 21.7 ± 6.1 %MVC) than in the control condition (from 24.4 ± 6.7 to 22.3 ± 6.1 %MVC). These findings suggest that reducing muscle stiffness by static stretching in one muscle can enhance MU recruitment in the other synergist while the change was slightly small.

选择性的股直肌静态拉伸改变了膝关节伸肌的运动单元发射行为。
静态拉伸会立即影响各种神经肌肉骨骼成分。在股四头肌中,只有股直肌(RF)可以通过髋部伸展和膝关节屈曲来拉伸。本研究的目的是研究两个协同肌肉在选择静态拉伸后的运动单元(MU)发射行为。14名男性(23.7±2.4岁)在干预前后进行了膝关节伸展任务:静态拉伸或控制条件。静态拉伸方案包括被动髋关节伸展和膝关节屈曲作为射频选择性拉伸1 min,重复6组,同时休息6 min作为对照条件。采用高密度表面肌电图检测RF和股外侧肌(VL)的MU放电,并计算在最大自愿收缩35%的加速收缩期间MU的招募阈值和放电率。通过剪切波弹性学评估的RF刚度在静态拉伸后显著降低,而VL刚度则没有(相互作用:p = 0.037)。时间是主要的影响因素,但在RF的MU招募阈值(p = 0.282)、两种肌肉的放电率(RF: p = 0.363, VL: p = 0.557)和最大力量(p = 0.362)方面没有相互作用,表明这些变量在两种条件下都发生了变化。然而,在VL的招募阈值中发现了相互作用(p = 0.018),表明静态拉伸条件下VL的招募阈值下降幅度(从24.9±6.3到21.7±6.1 MVC)大于对照组(从24.4±6.7到22.3±6.1 MVC)。这些发现表明,通过静态拉伸降低一块肌肉的僵硬度可以增强另一块协同剂的MU招募,但变化很小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.90
自引率
4.90%
发文量
162
审稿时长
3 months
期刊介绍: The Scandinavian Journal of Medicine & Science in Sports is a multidisciplinary journal published 12 times per year under the auspices of the Scandinavian Foundation of Medicine and Science in Sports. It aims to publish high quality and impactful articles in the fields of orthopaedics, rehabilitation and sports medicine, exercise physiology and biochemistry, biomechanics and motor control, health and disease relating to sport, exercise and physical activity, as well as on the social and behavioural aspects of sport and exercise.
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