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Lower extremity kinematics of athletics curve sprinting

机译:竞技曲线冲刺的下肢运动学

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摘要

Curve running requires the generation of centripetal force altering the movement pattern in comparison to the straight path run. The question arises which kinematic modulations emerge while bend sprinting at high velocities. It has been suggested that during curve sprints the legs fulfil different functions. A three-dimensional motion analysis (16 high-speed cameras) was conducted to compare the segmental kinematics of the lower extremity during the stance phases of linear and curve sprints (radius: 36.5m) of six sprinters of national competitive level. Peak joint angles substantially differed in the frontal and transversal plane whereas sagittal plane kinematics remained unchanged. During the prolonged left stance phase (left: 107.5ms, right: 95.7ms, straight: 104.4ms) the maximum values of ankle eversion (left: 12.7 degrees, right: 2.6 degrees, straight: 6.6 degrees), hip adduction (left: 13.8 degrees, right: 5.5 degrees, straight: 8.8 degrees) and hip external rotation (left: 21.6 degrees, right: 12.9 degrees, straight: 16.7 degrees) were significantly higher. The inside leg seemed to stabilise the movement in the frontal plane (eversion-adduction strategy) whereas the outside leg provided and controlled the motion in the horizontal plane (rotation strategy). These results extend the principal understanding of the effects of curve sprinting on lower extremity kinematics. This helps to increase the understanding of nonlinear human bipedal locomotion, which in turn might lead to improvements in athletic performance and injury prevention.
机译:与直线行驶相比,曲线行驶需要产生向心力来改变运动方式。出现的问题是,在高速弯道冲刺时会出现哪些运动学调制。已经提出,在曲线短跑期间,腿执行不同的功能。进行了三维运动分析(16个高速摄像机),以比较六个具有国家竞争力的短跑运动员的线性和曲线冲刺(半径:36.5m)的站立阶段的下肢运动学。峰关节角在额叶和横向平面上基本不同,而矢状面运动学保持不变。在延长的左姿势阶段(左:107.5ms,右:95.7ms,笔直:104.4ms),踝外翻的最大值(左:12.7度,右:2.6度,笔直:6.6度),髋关节内收(左: 13.8度,右:5.5度,笔直:8.8度)和髋关节外旋(左:21.6度,右:12.9度,笔直:16.7度)明显更高。内侧腿似乎稳定了额平面的运动(外翻内收策略),而外侧腿则提供并控制了水平面上的运动(旋转策略)。这些结果扩展了对曲线冲刺对下肢运动学影响的基本理解。这有助于增进对非线性人类双足运动的理解,进而可能改善运动成绩和预防伤害。

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