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首页> 外文期刊>Acta physiologica >Resistance training increases in vivo quadriceps femoris muscle specific tension in young men.
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Resistance training increases in vivo quadriceps femoris muscle specific tension in young men.

机译:抵抗训练增加了年轻男性体内股四头肌肌肉的特定张力。

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AIM: The present study investigated whether in vivo human quadriceps femoris (QF) muscle specific tension changed following strength training by systematically determining QF maximal force and physiological cross-sectional area (PCSA). METHODS: Seventeen untrained men (20 +/- 2 years) performed high-intensity leg-extension training three times a week for 9 weeks. Maximum tendon force (F(t)) was calculated from maximum voluntary contraction (MVC) torque, corrected for agonist and antagonist muscle activation, and moment arm length (d(PT)) before and after training. QF PCSA was calculated as the sum of the four component muscle volumes, each divided by its fascicle length. Dividing F(t) by the sum of the component muscle PCSAs, each multiplied by the cosine of the respective fascicle pennation angle, provided QF specific tension. RESULTS: MVC torque and QF activation increased by 31% (P < 0.01) and 3% (P < 0.05), respectively, but there was no change in antagonist co-activation or d(PT). Subsequently, F(t) increased by 27% (P < 0.01). QF volume increased by 6% but fascicle length did not change in any of the component muscles, leading to a 6% increase in QF PCSA (P < 0.05). Fascicle pennation angle increased by 5% (P < 0.01) but only in the vastus lateralis muscle. Consequently, QF specific tension increased by 20% (P < 0.01). CONCLUSION: An increase in human muscle specific tension appears to be a real consequence of resistance training rather than being an artefact of measuring errors but the underlying cause of this phenomenon remains to be determined.
机译:目的:本研究通过系统地确定QF最大力和生理截面积(PCSA),研究了力量训练后体内人类股四头肌(QF)肌肉的特定张力是否发生了变化。方法:17名未经训练的男性(20 +/- 2岁)每周进行3次高强度腿部伸展训练,共9周。由最大自愿收缩(MVC)扭矩计算出最大肌腱力(F(t)),并针对激动剂和拮抗剂肌肉激活进行校正,并在训练前后将其臂长(d(PT))进行校正。 QF PCSA计算为四部分肌肉体积的总和,每个体积除以其束长度。将F(t)除以组成肌肉PCSA的总和,再乘以各束束前倾角的余弦,可得到QF特定张力。结果:MVC扭矩和QF激活分别增加了31%(P <0.01)和3%(P <0.05),但拮抗剂共激活或d(PT)没有变化。随后,F(t)增加了27%(P <0.01)。 QF体积增加了6%,但任何组成肌群的束长度没有变化,导致QF PCSA增加了6%(P <0.05)。束状前倾角增加了5%(P <0.01),但仅在股外侧肌中。因此,QF比张力增加了20%(P <0.01)。结论:人类肌肉比张力的增加似乎是阻力训练的真实结果,而不是测量误差的假象,但这种现象的根本原因仍有待确定。

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