首页> 外文期刊>American Journal of Sports Medicine >Instruction of jump-landing technique using videotape feedback: altering lower extremity motion patterns.
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Instruction of jump-landing technique using videotape feedback: altering lower extremity motion patterns.

机译:使用录像带反馈的跳跃着陆技术的说明:改变下肢运动模式。

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BACKGROUND: Anterior cruciate ligament injury prevention programs have used videotapes of jump-landing technique as a key instructional component to improve landing performance. HYPOTHESIS: All videotape feedback model groups will increase knee flexion angles at initial contact and overall knee flexion motion and decrease peak vertical ground reaction forces and peak proximal anterior tibial shear forces to a greater extent than will a nonfeedback group. The secondary hypothesis is that the videotape feedback using the combination of the expert and self models will create the greatest change in each variable. STUDY DESIGN: Controlled laboratory study. METHODS: Knee kinematics and kinetics of college-aged recreational athletes randomly placed in 3 different videotape feedback model groups (expert only, self only, combination of expert and self) and a nonfeedback group were collected while participants performed a basketball jump-landing task on 3 testing occasions. RESULTS: All feedback groups significantly increased knee angular displacement flexion angles [F(6,70) = 8.03, P = .001] and decreased peak vertical ground reaction forces [F(6,78) = 2.68, P = .021] during performance and retention tests. The self and combination groups significantly increased knee angular displacement flexion angles more than the control group did; the expert model group did not change significantly more than the control group did. All feedback groups and the nonfeedback group significantly reduced peak vertical forces across performance and retention tests. There were no statistically significant changes in knee flexion angle at initial ground contact (P = .111) and peak proximal anterior tibial shear forces (P = .509) for both testing sessions for each group. CONCLUSION: The use of self or combination videotape feedback is most useful for increasing knee angular displacement flexion angles and reducing peak vertical forces during landing. CLINICAL RELEVANCE: The use of self or combination modeling is more effective than is expert-only modeling for the implementation of instructional programs aimed at reducing the risk of jump-landing anterior cruciate ligament injuries.
机译:背景:前交叉韧带损伤预防计划已使用跳跃着陆技术的录像带作为提高着陆性能的关键教学内容。假设:与非反馈组相比,所有录像带反馈模型组将在初次接触和整体膝关节屈曲运动时增加膝关节屈曲角度,并最大程度地降低峰值垂直地面反作用力和峰值胫前近侧剪切力。第二个假设是,使用专家模型和自我模型相结合的录像带反馈将在每个变量中产生最大的变化。研究设计:受控实验室研究。方法:收集大学生休闲运动员的膝关节运动学和动力学,将其随机分为3个不同的录像带反馈模型组(仅专家,仅自我,专家和自我结合)和一个非反馈组,同时参与者在比赛中执行篮球跳跃着陆任务3个测试场合。结果:在此期间,所有反馈组均显着增加了膝部角位移屈曲角[F(6,70)= 8.03,P = .001],并降低了峰值垂直地面反作用力[F(6,78)= 2.68,P = .021]。性能和保留测试。自我和组合组的膝关节角位移屈曲角度增加幅度明显大于对照组。专家模型组的变化没有比对照组大得多。所有反馈组和非反馈组在性能和保留测试中均显着降低了峰值垂直力。对于每组的两个测试阶段,初始地面接触时的膝部屈曲角度(P = .111)和胫骨近端前侧剪切力峰值(P = .509)都没有统计学上的显着变化。结论:使用自我或组合录像带反馈对于增加膝盖角位移屈曲角度并降低着陆时的峰值垂直力最为有用。临床相关性:自我或组合建模的使用比仅专家建模的方法更有效,可用于实施旨在降低前交叉韧带跳落起落风险的教学计划。

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