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首页> 外文期刊>Journal of sports sciences. >Resultant knee joint moments for lateral movement tasks on sliding and non-sliding sport surfaces.
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Resultant knee joint moments for lateral movement tasks on sliding and non-sliding sport surfaces.

机译:在滑动和非滑动运动表面上进行侧向运动任务时产生的膝关节力矩。

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The aim of this study was to compare ankle and knee joint moments observed when playing on sport surfaces that slide slightly relative to the ground with the moments observed when playing on conventional sport surfaces. Three-dimensional resultant internal joint moments and kinematic characteristics of the lower extremity were quantified for 21 university basketball players when performing v-cut and side-shuffle tasks on three types of sliding surface (interlocking tiles) and on two types of conventional surface (maple wood and rolled vinyl). Translational and rotational friction between the five test surfaces and a test shoe were also quantified. The five sport surfaces moved horizontally between 0.2 and 1.6 mm during the landing phase of the two tasks. The medio-lateral ground reaction forces were lowest for the surfaces with the highest horizontal movement. Resultant ankle joint moments were lower and resultant knee moments were higher on the sliding surfaces than the conventional surfaces. Sport surfaces that allow a few millimetres of horizontal movement during ground contact may reduce joint loading at the ankle joint, but increase joint loading at the knee joint, when compared with conventional sport surfaces, and thus may influence the prevalence of knee injuries.
机译:这项研究的目的是将在相对于地面略微滑动的运动表面上进行比赛时观察到的踝关节和膝盖关节的力矩与在传统运动表面上进行比赛时观察到的力矩进行比较。在21种大学篮球运动员在三种类型的滑动表面(互锁砖)和两种常规表面(枫木)上执行V形切边和侧边改组任务时,量化了三维合成的内部关节力矩和下肢运动学特征木材和热轧乙烯基)。还定量了五个测试表面和测试靴之间的平移和旋转摩擦。在两项任务着陆阶段中,五个运动表面在0.2到1.6毫米之间水平移动。对于水平运动最大的表面,中外侧地面反作用力最低。与常规表面相比,在滑动表面上产生的踝关节力矩更低,而在合成表面上产生的膝盖力矩更高。与常规运动表面相比,在地面接触期间允许几毫米水平运动的运动表面可能会减少踝关节的关节负荷,但会增加膝关节的关节负荷,因此可能会影响膝盖受伤的患病率。

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