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首页> 外文期刊>American Journal of Sports Medicine >Biomechanical measures of neuromuscular control and valgus loading of the knee predict anterior cruciate ligament injury risk in female athletes: a prospective study.
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Biomechanical measures of neuromuscular control and valgus loading of the knee predict anterior cruciate ligament injury risk in female athletes: a prospective study.

机译:神经肌肉控制和膝外翻负荷的生物力学措施预测女性运动员前十字韧带损伤的风险:一项前瞻性研究。

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摘要

BACKGROUND: Female athletes participating in high-risk sports suffer anterior cruciate ligament injury at a 4- to 6-fold greater rate than do male athletes. HYPOTHESIS: Prescreened female athletes with subsequent anterior cruciate ligament injury will demonstrate decreased neuromuscular control and increased valgus joint loading, predicting anterior cruciate ligament injury risk. STUDY DESIGN: Cohort study; Level of evidence, 2. METHODS: There were 205 female athletes in the high-risk sports of soccer, basketball, and volleyball prospectively measured for neuromuscular control using 3-dimensional kinematics (joint angles) and joint loads using kinetics (joint moments) during a jump-landing task. Analysis of variance as well as linear and logistic regression were used to isolate predictors of risk in athletes who subsequently ruptured the anterior cruciate ligament. RESULTS: Nine athletes had a confirmed anterior cruciate ligament rupture; these 9 had significantly different knee posture and loading compared to the 196 who did not have anterior cruciate ligament rupture. Knee abduction angle (P<.05) at landing was 8 degrees greater in anterior cruciate ligament-injured than in uninjured athletes. Anterior cruciate ligament-injured athletes had a 2.5 times greater knee abduction moment (P<.001) and 20% higher ground reaction force (P<.05), whereas stance time was 16% shorter; hence, increased motion, force, and moments occurred more quickly. Knee abduction moment predicted anterior cruciate ligament injury status with 73% specificity and 78% sensitivity; dynamic valgus measures showed a predictive r2 of 0.88. CONCLUSION: Knee motion and knee loading during a landing task are predictors of anterior cruciate ligament injury risk in female athletes. CLINICAL RELEVANCE: Female athletes with increased dynamic valgus and high abduction loads are at increased risk of anterior cruciate ligament injury. The methods developed may be used to monitor neuromuscular control of the knee joint and may help develop simpler measures of neuromuscular control that can be used to direct female athletes to more effective, targeted interventions.
机译:背景:参加高风险运动的女运动员遭受的前十字韧带损伤的比率是男运动员的4至6倍。假设:经过预先筛查的女运动员继发前十字韧带损伤后,会表现出神经肌肉控制降低和外翻关节负荷增加,从而预测前十字韧带损伤的风险。研究设计:队列研究;证据级别,方法2。方法:在足球,篮球和排球等高风险运动中,有205名女运动员使用3维运动学(关节角度)对神经肌肉控制进行了预期测量,并在动力学过程中使用了动力学(关节力矩)进行了关节负荷测试。跳跃着陆任务。方差分析以及线性和逻辑回归被用于隔离随后破裂前交叉韧带的运动员的风险预测因子。结果:九名运动员确诊前交叉韧带破裂;与没有前交叉韧带破裂的196个相比,这9个膝盖的姿势和负重明显不同。前交叉韧带受伤的运动员着陆时的膝盖外展角(P <.05)比未受伤的运动员大8度。前交叉韧带受伤的运动员的膝盖外展力矩大2.5倍(P <.001),地面反作用力高20%(P <.05),而站立时间要短16%。因此,运动,力和力矩增加的发生更快。膝关节外展力矩可预测前交叉韧带损伤状态,特异性为73%,敏感性为78%。动态外翻测量显示预测的r2为0.88。结论:着陆任务期间的膝盖运动和膝盖负荷是女性运动员前十字韧带损伤风险的预测因子。临床相关性:动态外翻和外展负荷增加的女运动员前交叉韧带损伤的风险增加。所开发的方法可用于监测膝关节的神经肌肉控制,并有助于开发更简单的神经肌肉控制措施,以指导女运动员采取更有效的针对性干预措施。

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