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首页> 外文期刊>Acta astronautica >Role of active plantar-flexion and/or passive dorsi-flexion of ankle joints as the countermeasure for unloading-related effects in human soleus
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Role of active plantar-flexion and/or passive dorsi-flexion of ankle joints as the countermeasure for unloading-related effects in human soleus

机译:活性跖骨屈曲和/或无源背侧弯曲的作用作为踝关节的反应,以对人类单独卸载相关效果的对策

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摘要

Exercises in space are not always effective for prevention of atrophy in soleus, which is most susceptible to gravitational unloading. Therefore, this study was performed to investigate the optimum exercise prescription for prevention of the gravitational unloading-related atrophy in human soleus. Effects of active plantar-flexion of ankle joints or front sole, or passive dorsi-flexion of ankle joints during various exercises on the mobilization of soleus muscles were studied. Electromyogram (EMG) activities in soleus were recorded in 7 healthy male subjects during 1) cycling at 70, 130, and/or 170 W, by pedalling using arch or front sole, 2) weight lifting (isometric and/or squat push-up) with or without active plantar-flexion of the ankle joints, and 3) knee extension/flexion exercise in a supine position with or without forced passive dorsi-flexion of ankle joints. Greater EMG levels were observed, when the cycling load was increased and the subjects pedaled by using front sole. Mobilization of soleus was increased, when the subjects tried to plantar-flex the ankle joints during weight lifting. Soleus muscles were not mobilized during knee extension/flexion exercise with passively plantar-flexed ankle joint. But EMGs of soleus were elevated similar to 22 times in response to forced ankle-joint dorsi-flexion, not knee-joint extension/flexion exercise. The data indicated that active plantar-flexion or passive dorsi-flexion of ankle joints is essential for stimulation of soleus muscle mobilization.
机译:空间中的练习并不总是有效地在索勒斯预防萎缩,这最容易受到引力卸料。因此,进行该研究以研究预防人类单独的引力卸载相关萎缩的最佳运动处方。研究了踝关节或前脚底的活性跖骨屈曲的影响,或者在各种锻炼中进行踝关节在动员肌肌的各种锻炼中的影响。在1)期间,在70,130和/或170W中,通过使用拱形或前脚底,2)重量提升(等距和/或蹲下俯卧撑,在70,130和/或170W中循环在70,130和/或170W的7)中的肌电图(EMG)活性。 )有或没有活跃的脚踝关节屈曲,3)膝盖延伸/屈曲运动,在仰卧位,有或没有强制无源背屈的踝关节屈曲。观察到更大的EMG水平,当循环载荷增加并且通过使用前脚底踩踏的受试者。当受试者试图在体重升降期间试图突出踝关节时,单独的动员增加。在膝关节延长/屈曲运动期间没有动员肌肉,用被动跖屈的踝关节。但是,由于强制踝关节背屈,而不是膝关节延伸/屈曲运动,肌肉的肌肉的肌肉似乎与22倍相似。数据表明,踝关节的活性跖屈或无源背屈对于刺激肌肉动员至关重要。

著录项

  • 来源
    《Acta astronautica 》 |2020年第10期| 174-178| 共5页
  • 作者单位

    Kokushikan Univ Fac Let Tokyo Japan;

    Doshisha Univ Res Ctr Space Med Sci Kyotanabe Kyoto Japan;

    Doshisha Univ Res Ctr Space Med Sci Kyotanabe Kyoto Japan|Matsumoto Univ Grad Sch Hlth Sci Nagano Japan;

    Kansai Univ Fac Hlth Well Being Osaka Japan;

    Nara Coll Chiben Gakuen Nara Japan;

    Doshisha Univ Res Ctr Space Med Sci Kyotanabe Kyoto Japan|Doshisha Univ Fac Grad Sch Hlth Sports Sci Kyoto Japan;

    Doshisha Univ Res Ctr Space Med Sci Kyotanabe Kyoto Japan|Toyohashi SOZO Univ Grad Sch Hlth Sci Toyohashi Aichi Japan;

    Doshisha Univ Res Ctr Space Med Sci Kyotanabe Kyoto Japan|Juntendo Univ Grad Sch Hlth Sports Sci Chiba Japan;

    Doshisha Univ Res Ctr Space Med Sci Kyotanabe Kyoto Japan|Doshisha Univ Org Res Initiat Devel Kyoto Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Countermeasure for prevention of soleus atrophy; Plantar- or dorsi-flexion of ankle joints;

    机译:防止单独萎缩的对策;踝关节的植物或背部屈曲;

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