首页> 美国卫生研究院文献>Frontiers in Physiology >Neuromuscular Training Improves Lower Extremity Biomechanics Associated with Knee Injury during Landing in 11–13 Year Old Female Netball Athletes: A Randomized Control Study
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Neuromuscular Training Improves Lower Extremity Biomechanics Associated with Knee Injury during Landing in 11–13 Year Old Female Netball Athletes: A Randomized Control Study

机译:神经肌肉训练可改善11-13岁女无板篮球运动员着陆过程中与膝关节损伤相关的下肢生物力学:一项随机对照研究

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摘要

The purpose of this study was to examine the effects of a neuromuscular training (NMT) program on lower-extremity biomechanics in youth female netball athletes. The hypothesis was that significant improvements would be found in landing biomechanics of the lower-extremities, commonly associated with anterior cruciate ligament (ACL) injury, following NMT. Twenty-three athletes (age = 12.2 ± 0.9 years; height = 1.63 ± 0.08 m; mass = 51.8 ± 8.5 kg) completed two testing sessions separated by 7-weeks and were randomly assigned to either a experimental or control group. Thirteen athletes underwent 6-weeks of NMT, while the remaining 10 served as controls and continued their regular netball training. Three-dimensional lower-extremity kinematics and vertical ground reaction force (VGRF) were measured during two landing tasks, a drop vertical jump and a double leg broad jump with a single leg landing. The experimental group significantly increased bilateral knee marker distance during the bilateral landing task at maximum knee-flexion range of motion. Knee internal rotation angle during the unilateral landing task at maximum knee flexion-extension range of motion was significantly reduced (p ≤ 0.05, g > 1.00). The experimental group showed large, significant decreases in peak vertical ground reaction force in both landing tasks (p ≤ 0.05, g > −1.30). Control participants did not demonstrate any significant pre-to-post-test changes in response to the 6-week study period. Results of the study affirm the hypothesis that a 6-week NMT program can enhance landing biomechanics associated with ACL injury in 11–13 year old female netball athletes.
机译:这项研究的目的是检查神经肌肉训练(NMT)程序对青少年女子无板篮球运动员下肢生物力学的影响。假设是,在NMT之后,通常与前交叉韧带(ACL)损伤相关的下肢着陆生物力学将得到显着改善。 23名运动员(年龄= 12.2±0.9岁;身高= 1.63±0.08 m;质量= 51.8±8.5千克)完成了两个测试阶段,每7周一次,分别分为实验组或对照组。 13名运动员接受了NMT训练,为期6周,而其余10名则作为对照,并继续接受常规的无挡板篮球训练。在两次着陆任务期间,分别测量了下肢的三维运动学和垂直地面反作用力(VGRF),即单腿着陆时的下降垂直跳跃和双腿宽跳。实验组在最大膝盖屈曲运动范围内,在双侧着陆任务期间显着增加了双侧膝盖标志物的距离。在最大膝盖屈伸运动范围内,单侧着陆任务期间的膝盖内部旋转角度显着减小(p≤0.05,g> 1.00)。实验组在两个着陆任务中均显示出最大的垂直地面反作用力显着下降(p≤0.05,g> -1.30)。对照参与者没有显示出对6周研究期的任何显着的测试前至测试后变化。研究结果证实了一个假设,即为期6周的NMT计划可以增强11-13岁女无板篮球运动员与ACL损伤相关的着陆生物力学。

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