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人类腿部伸肌的力学特性和纤维组成。

Mechanical characteristics and fiber composition of human leg extensor muscles.

作者信息

Bosco C, Komi P V

出版信息

Eur J Appl Physiol Occup Physiol. 1979 Aug;41(4):275-84. doi: 10.1007/BF00429744.

Abstract

To investigate the influence of skeletal muscle fiber composition on the mechanical performance of human skeletal muscle under dynamic conditions, 34 physical education students with differing muscle fiber composition (M. vastus lateralis) were used as subjects to perform maximal vertical jumps on the force-platform. Two kinds of jumps were performed: one from a static starting position (SJ), the other with a preliminary counter-movement (CMJ). The calculated mechanical parameters included height of rise of center of gravity (h), average force (F), net impulse (NI) and average mechanical power (W). It was observed that the percentage of fast twitch fibers was significantly related (p less than 0.05--0.01) to these variables in SJ condition and also to h and NI of the positive work phase in CMJ. It is concluded that skeletal muscle fiber composition also determines performance in a multijoint movement. The result is explainable through the differences in the mechanical characteristics of the motor units and their respective muscle fibers.

摘要

为研究动态条件下骨骼肌纤维组成对人体骨骼肌力学性能的影响,选取34名具有不同肌肉纤维组成(股外侧肌)的体育专业学生作为受试者,在测力平台上进行最大垂直跳测试。测试了两种跳跃方式:一种是从静态起始位置起跳(SJ),另一种是先进行预蹲动作再起跳(CMJ)。计算得到的力学参数包括重心上升高度(h)、平均力(F)、净冲量(NI)和平均机械功率(W)。结果发现,快肌纤维百分比在SJ条件下与这些变量显著相关(p<0.05 - 0.01),在CMJ中与正功阶段的h和NI也显著相关。研究得出结论,骨骼肌纤维组成也决定了多关节运动中的表现。该结果可通过运动单位及其各自肌肉纤维的力学特性差异来解释。

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