首页> 外文期刊>Journal of Biomechanics >Determinants of difference in leg stiffness between endurance- and power-trained athletes.
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Determinants of difference in leg stiffness between endurance- and power-trained athletes.

机译:耐力和力量训练的运动员之间腿部僵硬差异的决定因素。

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摘要

Understanding the leg and joint stiffness during human movement would provide important information that could be utilized for evaluating sports performance and for injury prevention. In the present study, we examined the determinants of the difference in the leg stiffness between the endurance-trained and power-trained athletes. Seven distance runners and seven power-trained athletes performed in-place hopping, matching metronome beats at 3.0 and 1.5Hz. Leg and joint stiffness were calculated from kinetic and kinematics data. Electromyographic activity (EMG) was recorded from six leg muscles. At both hopping frequencies, the power-trained athletes demonstrated significantly higher leg stiffness than the distance runners. Hip, knee, and ankle joints were analyzed for stiffness and touchdown angles. Ankle stiffness was significantly greater in the power-trained athletes than the distance runners at 3.0Hz as was knee stiffness at 1.5Hz. There was no significant difference in touchdown angle between the DR and PT groups at either hopping frequencies. When significant difference in EMG activity existed between two groups, it was always greater in the distance runners than the power-trained athletes. These results suggest that (1) the difference in leg stiffness between endurance-trained and power-trained athletes is best attributed to increased joint stiffness, and (2) the difference in joint stiffness between the two groups may be attributed to a lack of similarity in the intrinsic stiffness of the muscle-tendon complex rather than in altered neural activity.
机译:了解人体运动过程中的腿部和关节僵硬程度将提供重要的信息,这些信息可用于评估运动表现和预防伤害。在本研究中,我们研究了耐力训练和力量训练的运动员腿部僵硬度差异的决定因素。七名长跑运动员和七名接受过动力训练的运动员进行了现场跳频,匹配了3.0和1.5Hz的节拍器节拍。从动力学和运动学数据计算腿和关节的刚度。从六个腿部肌肉记录肌电活动(EMG)。在两个跳跃频率下,受过动力训练的运动员的腿部僵硬度均明显高于长跑运动员。分析了髋,膝和踝关节的刚度和接地角。接受过动力训练的运动员的踝关节刚度明显高于3.0Hz的远距离跑步者,而1.5Hz的膝关节刚度也更大。在两种跳跃频率下,DR组和PT组之间的着陆角没有显着差异。当两组之间的EMG活动存在显着差异时,长跑运动员的力量始终大于受过动力训练的运动员。这些结果表明(1)耐力训练和力量训练的运动员之间的腿部僵硬差异最好归因于关节僵硬程度的增加,(2)两组之间的关节僵硬差异可能归因于缺乏相似性肌腱复合体的固有刚度而不是神经活动的改变。

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