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首页> 外文期刊>Journal of Biomechanics >Effect of landing height on frontal plane kinematics, kinetics and energy dissipation at lower extremity joints.
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Effect of landing height on frontal plane kinematics, kinetics and energy dissipation at lower extremity joints.

机译:降落高度对下肢关节额叶运动学,动力学和能量耗散的影响。

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Lack of the necessary magnitude of energy dissipation by lower extremity joint muscles may be implicated in elevated impact stresses present during landing from greater heights. These increased stresses are experienced by supporting tissues like cartilage, ligaments and bones, thus aggravating injury risk. This study sought to investigate frontal plane kinematics, kinetics and energetics of lower extremity joints during landing from different heights. Eighteen male recreational athletes were instructed to perform drop-landing tasks from 0.3- to 0.6-m heights. Force plates and motion-capture system were used to capture ground reaction force and kinematics data, respectively. Joint moment was calculated using inverse dynamics. Joint power was computed as a product of joint moment and angular velocity. Work was defined as joint power integrated over time. Hip and knee joints delivered significantly greater joint power and eccentric work (p<0.05) than the ankle joint at both landing heights. Substantial increase (p<0.05) in eccentric work was noted at the hip joint in response to increasing landing height. Knee and hip joints acted as key contributors to total energy dissipation in the frontal plane with increase in peak ground reaction force (GRF). The hip joint was the top contributor to energy absorption, which indicated a hip-dominant strategy in the frontal plane in response to peak GRF during landing. Future studies should investigate joint motions that can maximize energy dissipation or reduce the need for energy dissipation in the frontal plane at the various joints, and to evaluate their effects on the attenuation of lower extremity injury risk during landing.
机译:下肢关节肌肉缺乏必要的能量耗散量可能与从高处降落时出现的升高的冲击应力有关。支撑软骨,韧带和骨骼等组织会遇到这些增加的压力,从而加重了受伤的风险。这项研究试图研究从不同高度着陆时下肢关节的额面运动学,动力学和能量学。指示18名男性休闲运动员执行0.3-0.6 m高度的降落任务。测力板和运动捕获系统分别用于捕获地面反作用力和运动学数据。关节力矩是使用逆动力学计算的。联合功率被计算为联合力矩和角速度的乘积。功被定义为随着时间的推移整合在一起的联合力量。在两个着陆高度上,髋关节和膝关节的关节力量和偏心功均明显大于踝关节(p <0.05)。随着着陆高度的增加,在髋关节处偏心功显着增加(p <0.05)。膝关节和髋关节是峰值地面反作用力(GRF)增加的原因,是导致额叶总能量消散的关键因素。髋关节是能量吸收的最大贡献者,这表明着陆时髋部占主导地位的策略是对着陆期间的GRF峰值做出反应。未来的研究应该研究关节运动,这些运动可以最大程度地消耗能量,或减少各个关节在额面的能量消耗,并评估其对着陆过程中下肢受伤风险衰减的影响。

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