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跳跃运动中人类腿部伸肌的神经肌肉功能与机械效率

Neuromuscular function and mechanical efficiency of human leg extensor muscles during jumping exercises.

作者信息

Bosco C, Ito A, Komi P V, Luhtanen P, Rahkila P, Rusko H, Viitasalo J T

出版信息

Acta Physiol Scand. 1982 Apr;114(4):543-50. doi: 10.1111/j.1748-1716.1982.tb07022.x.

Abstract

The influence of prestretch amplitude on the mechanical efficiency was examined with 5 subjects, who performed 5 different series of vertical jumps, each of which differed with respect to the mechanics of the knee joint action during the prestretch (eccentric) phase of the contact on the floor. Electromyographic activity was recorded from the major extensor muscles during the entire work period of 1 min per series. In addition, expired air was collected during the test and recovery for determination of energy expenditure. Mechanical work was calculated from the vertical displacement of the body during the jumps. The results indicated that high net efficiency of 38.7% was observed in condition where amplitude of knee bending in eccentric phase was small. In large range motion the corresponding net efficiency was 30.1%. In jumps where no prestretching of extensor muscles occurred the net efficiency was 19.7%. The high efficiency of small amplitude jumps was characterized by low myoelectrical activity of the leg extensor muscles during the positive (concentric) work phase. In addition, the small amplitude jumps had shorter transition time in the stretch-shortening cycle, high average eccentric force and high stretching speed. Therefore the results suggest that the restitution of elastic energy, which was also related to the length change and stiffness of the muscles during stretch, plays an important role in regulating the mechanical efficiency of work.

摘要

对5名受试者进行测试,研究预拉伸幅度对机械效率的影响。这5名受试者进行了5组不同的垂直跳跃,每组跳跃在与地面接触的预拉伸(离心)阶段膝关节动作的力学方面存在差异。在每组1分钟的整个工作期间,记录主要伸肌的肌电活动。此外,在测试和恢复期间收集呼出的气体,以测定能量消耗。根据跳跃过程中身体的垂直位移计算机械功。结果表明,在离心阶段膝关节弯曲幅度较小的情况下,观察到较高的净效率,为38.7%。在大幅度运动中,相应的净效率为30.1%。在伸肌未进行预拉伸的跳跃中,净效率为19.7%。小幅度跳跃的高效率表现为在正向(向心)工作阶段腿部伸肌的肌电活动较低。此外,小幅度跳跃在拉长-缩短周期中的过渡时间较短,平均离心力较高,拉伸速度较高。因此,结果表明,弹性能量的恢复,这也与拉伸过程中肌肉的长度变化和刚度有关,在调节工作的机械效率方面起着重要作用。

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