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Bottom-Up Kinetic Chain in Drop Landing among University Athletes with Normal Dynamic Knee Valgus

机译:具有正常动力膝外翻的大学生摔落降落运动的自下而上动力学链

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摘要

The study investigated the influence of ankle strength and its range of motion (ROM) on knee kinematics during drop landing. Fifteen male and fifteen female university athletes with a normal range of dynamic knee valgus (DKV) (knee frontal plane projection angle: men = 3° to 8°, females = 7° to 13°) were recruited. They performed drop landing at height 30 cm and 45 cm with three-dimensional motion capture and analysis. Knee angles were compared at specific landing phases. Isokinetic ankle strength was tested at 60°/s angular velocity while the weight-bearing lunge test was conducted to evaluate ankle ROM. For males, strength for both plantarflexors and dorsiflexors were associated with knee kinematics at both heights (30 cm: r = −0.50, = 0.03; 45 cm: r = −0.45, = 0.05) during maximum vertical ground reaction force (MVGRF) phase. For females, ankle invertor strength and knee kinematics were associated at both 30cm (r = 0.53; = 0.02,) and 45 cm landing heights (r = 0.49, = 0.03), while plantarflexor strength and knee kinematics showed a significant association during initial contact (r = 0.70, < 0.01) and MVGRF (r = 0.55, = 0.02) phases at height 30 cm only. Male and female athletes with normal range of DKV showed a significant relationship between ankle strength and knee kinematics at specific landing phases. These relationships varied with increased landing height.
机译:该研究调查了脚踝力量及其运动范围(ROM)对降落过程中膝盖运动学的影响。招募了15名男性和15名女性大学运动员,他们的动态膝外翻(DKV)正常范围(膝盖额面投影角度:男性= 3°至8°,女性= 7°至13°)。他们通过3维运动捕捉和分析在30 cm和45 cm高处进行了落地着陆。在特定的着陆阶段比较膝盖角度。等速踝关节力量在60°/ s角速度下进行测试,同时进行负重弓箭测试以评估踝关节ROM。对于男性,在最大垂直地面反作用力(MVGRF)阶段,两个高度(30 cm:r = -0.50,= 0.03; 45 cm:r = -0.45,= 0.05)时,足屈肌和背屈肌的力量均与膝关节运动学相关。 。对于女性,在30cm(r = 0.53; = 0.02,)和45 cm着陆高度(r = 0.49,= 0.03)时,踝关节逆变器的强度和膝关节运动相关,而初次接触时plant屈肌的力量和膝关节运动相关。 (r = 0.70,<0.01)和MVGRF(r = 0.55,= 0.02)相仅在高度30 cm处。 DKV正常范围的男性和女性运动员在特定着陆阶段的脚踝力量和膝盖运动学之间显示出显着的关系。这些关系随着着陆高度的增加而变化。

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