首页> 外文期刊>Orthopaedic Journal of Sports Medicine >SEX-SPECIFIC ENERGY ABSORPTION STRATEGIES DURING UNANTICIPATED SINGLE-LEG LANDINGS IN ADOLESCENTS: IMPLICATIONS FOR KNEE INJURIES
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SEX-SPECIFIC ENERGY ABSORPTION STRATEGIES DURING UNANTICIPATED SINGLE-LEG LANDINGS IN ADOLESCENTS: IMPLICATIONS FOR KNEE INJURIES

机译:青少年意外单腿着陆期间性别特异性能量吸收策略:膝关节伤害的影响

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Background: The vast majority of ACL injuries in adolescents occur during non-contact injuries, in particular single-leg landings. The magnitude of energy absorption about each joint during theses landings influences the internal and external forces acting on the joints of the lower extremity. Understanding the biomechanics of landing in adolescent male and female athletes may provide insight into these non-contact injury mechanisms. Hypothesis/Purpose: This study set out to identify sex-specific energy absorption strategies during single-leg landing and determine the relationship between joint strength and the observed strategies. To better represent real-world conditions, we developed a novel unanticipated drop-jump landing protocol for this population. Methods: Thirty-one healthy youth athletes completed unanticipated single-leg drop-jump landings on their dominant limb. Kinematics and lower-limb contributions to energy absorption were calculated over the landing phase for each jump. Independent t-tests as well as Mann-Whitney U tests determined the presence of statistical differences between sexes. Pearson and Spearman correlation coefficients determined the relationship between isometric joint strength and the observed kinematics and energy absorption. Results: Females participants absorbed a larger proportion of the landing forces at the ankle and smaller proportion at the hip compared to males. Females also reached larger peak negative joint power in their knee and ankle. Both hip extension and ankle plantar flexion strength were correlated with greater spine flexion and less pelvic flexion. Conclusion: Females adopted an energy absorption strategy which utilized distal joints to absorb a larger portion of the landing forces and tended to absorb the forces later relative to males. A greater reliance on the distal joints is related to reduced hip strength and may increase the risk for sustaining an ACL injury.
机译:背景:在非接触伤害期间,青少年的绝大多数ACL损伤发生,特别是单腿着陆。关于落地期间每个关节的能量吸收的大小会影响作用于下肢关节的内部和外力。了解青少年男女运动员着陆的生物力学可能会对这些非接触损伤机制提供洞察力。假设/目的:本研究旨在识别单腿降落期间的性别特异性能量吸收策略,并确定联合强度与观察到的策略之间的关系。为了更好地代表现实世界的条件,我们为这一人口开发了一种新颖的意外滴跃起的降落协议。方法:三十一位健康青年运动员在他们的主导肢体上完成了意想不到的单腿下降跳跃着陆。每次跳跃的着陆阶段计算运动学和低肢对能量吸收的贡献。独立的T检验以及Mann-Whitney U测试确定了性别之间的统计差异。 Pearson和Spearman相关系数决定了等距关节强度与观察到的运动学和能量吸收之间的关系。结果:女性参与者在踝关节处吸收更大比例的着陆部队,与雄性相比,臀部的比例较小。女性在膝盖和脚踝中也达到了更大的峰值负关节力量。髋部延伸和踝关节跖骨屈曲强度都与更高的脊柱屈曲和较少的骨盆屈曲相关。结论:女性采用了一种能量吸收策略,其利用远端关节吸收更大的着陆部队的较大部分,并倾向于以后吸收相对于雄性的力量。对远端关节的更大依赖性与降低的髋关节强度有关,并且可能增加维持ACL损伤的风险。

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