首页> 美国卫生研究院文献>Journal of Sports Science Medicine >Muscle Activity Response to External Moment During Single-Leg Drop Landing in Young Basketball Players: The Importance of Biceps Femoris in Reducing Internal Rotation of Knee During Landing
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Muscle Activity Response to External Moment During Single-Leg Drop Landing in Young Basketball Players: The Importance of Biceps Femoris in Reducing Internal Rotation of Knee During Landing

机译:青年篮球运动员单腿下降着陆过程中肌肉活动对外部力矩的反应:股二头肌在降低着陆过程中膝盖内部旋转中的重要性

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摘要

Internal tibial rotation with the knee close to full extension combined with valgus collapse during drop landing generally results in non-contact anterior cruciate ligament (ACL) injury. The purpose of this study was to investigate the relationship between internal rotation of the knee and muscle activity from internal and external rotator muscles, and between the internal rotation of knee and externally applied loads on the knee during landing in collegiate basketball players. Our hypothesis was that the activity of biceps femoris muscle would be an important factor reducing internal knee rotation during landing. The subjects were 10 collegiate basketball students: 5 females and 5 males. The subjects performed a single-leg drop landing from a 25-cm height. Femoral and tibial kinematics were measured using a 3D optoelectronic tracking system during the drop landings, and then the knee angular motions were determined. Ground reaction forces and muscle activation patterns (lateral hamstring and medial hamstring) were simultaneously measured and computed. Results indicated that lower peak internal tibial rotation angle at the time of landing was associated with greater lateral hamstring activity (r = -0.623, p < 0.001). When gender was considered, the statistically significant correlation remained only in females. There was no association between the peak internal tibial rotation angle and the knee internal rotation moment. Control of muscle activity in the lateral to medial hamstring would be an important factor in generating sufficient force to inhibit excessive internal rotation during landing. Strengthening the biceps femoris might mitigate the higher incidence of non-contact ACL injury in female athletes.Key points class="unordered" style="list-style-type:disc">Lower activity of the external rotator muscle of the knee, which inhibits internal rotation of the knee, may be the reason why females tend to show a large internal rotation of the knee during drop landing.Externally applied internal rotation moment of the knee during landing would not be expected to explain why female athletes tend to show excessive internal knee rotation.Biceps femoris strength training might help decrease the incidence of non-contact ACL injury in female athletes.
机译:胫骨内部旋转,膝盖接近完全伸展,在降落过程中外翻塌陷,通常会导致非接触式前交叉韧带(ACL)损伤。这项研究的目的是调查大学生篮球运动员着陆时膝盖的内部旋转与来自内部和外部旋转肌的肌肉活动之间的关系,以及膝盖的内部旋转与膝盖上外部施加的负载之间的关系。我们的假设是股二头肌的活动可能是降落过程中减少内部膝盖旋转的重要因素。受试者为10名大学篮球学生:5名女性和5名男性。受试者从25厘米高处进行了单腿落地降落。在降落过程中使用3D光电跟踪系统测量股骨和胫骨的运动学,然后确定膝盖的角度运动。同时测量并计算地面反作用力和肌肉激活模式(外侧绳肌和内侧绳肌)。结果表明,着陆时较低的胫骨内旋转峰峰值与较大的外侧绳肌活动相关(r = -0.623,p <0.001)。当考虑性别时,统计学上的显着相关性仅存在于女性中。峰值内胫骨旋转角度和膝盖内旋转力矩之间没有关联。控制外侧肌至内侧肌的肌肉活动将是产生足够的力量以抑制着陆期间过度内部旋转的重要因素。加强股二头肌可能减轻女运动员非接触式ACL损伤的发生率。要点 class =“ unordered” style =“ list-style-type:disc”> <!-list-behavior = unordered prefix -word = mark-type = disc max-label-size = 0-> 膝盖外部旋转肌的活动减少,抑制了膝盖的内部旋转,这可能是女性趋向于显示 降落着陆时膝关节内部旋转较大。 不能期望外部施加着陆时膝部内部旋转力矩来解释为什么女运动员倾向于表现出过度的内部膝部旋转。
  • 股二头肌力量训练可能有助于降低女运动员非接触式ACL损伤的发生率。
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