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Multi-plane, multi joint lower extremity support moments during a rapid deceleration task: Implications for knee loading

机译:多平面,多关节下肢支持瞬间在快速减速任务期间:膝关节荷载的影响

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The principle of lower limb support, and the contribution of hip, knee and ankle moments to an overall limb support strategy for an impact-like, rapid deceleration movement may help explain individual moment magnitude changes, thereby providing insight into how injury might occur or be avoided. Twenty subjects performed single limb, impact-like, deceleration landings at three different knee flexion angles in the range of 0-25, 25-50 and 50-75 degrees. Kinematic and kinetic measures identified hip, knee and ankle moment contribution to limb support moments (LSMs) in three planes. Repeated measures ANOVA compared LSMs and the contribution of individual joint moments at initial contact (IC) and 50 ms after. There were no significant differences in the overall LSMs at IC in any plane when the deeper knee flexion landings (25-50 degrees and 50-75 degrees) were compared to the 0-25 degrees landing position but there were significant changes in the 50 ms period after IC. There were greater overall extensor LSMs, less resistance to medial opening of the knee and decreased support against internal tibia rotation when landing in greater knee flexion. The role of individual joint moments changed rapidly in the 50 ms period after initial landing; and, the relative contribution of the hip and ankle moments depended on the degree of limb flexion at landing. Analyses of individual joint moments emphasized the critical role that the hip joint moments have in balancing potentially injurious knee moments in all three planes for all three landing conditions.
机译:肢体支撑的原理,以及髋关节,膝关节和踝关节到整体肢体的贡献,对抗冲击的方式,快速减速运动可能有助于解释单个矩大小的变化,从而了解可能发生伤害的洞察避免。二十个受试者在三种不同的膝部屈曲角度下进行单肢,撞击,减速,在0-25,25-50和50-75度范围内。运动和动力学措施将臀部,膝关节和脚踝时刻贡献到三个平面中的肢体支持时刻(LSM)。重复措施ANOVA比较LSM和在初始联系人(IC)和50毫秒之后的个别联合时刻的贡献。当膝关节屈曲着陆(25-50度和50-75度)与0-25度着陆位置进行更深的膝关节屈曲着陆(25-50度和50-75度时,在任何飞机上都没有显着差异,但在50毫秒中存在显着变化IC后的时期。当在更大的膝关节屈曲时,有更多的总体伸点LSM,对膝盖内侧开口的抵抗力较小,并降低了对内部胫骨旋转的支持。在初始登陆后的50毫秒期间,各个联合时刻的作用在50毫秒的时间内变化;并且,臀部和踝关节的相对贡献取决于着陆时肢体屈曲的程度。各个联合时刻的分析强调了髋关节联合时刻在所有三个着陆条件下平衡所有三个飞机的潜在伤害膝关节时刻的关键作用。

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