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Comparison of Rotational Tractionof Athletic Footwear on Varying PlayingSurfaces Using Different Normal Loads

机译:不同法向载荷作用下运动鞋在不同运动表面上旋转牵引力的比较

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摘要

As an athlete accelerates, stops, and changes direction, numerous forces are transmitted to the lower extremities. The interaction between an athlete's shoe and the playing surface has been indicated as a factor in lower extremity injury risk. In particular, high rotational forces may result in increased injuries to the lower extremities. Rotational traction forces produced by eight different cleated shoes on Kentucky bluegrass (Poa pratensis L.), AstroTurf GameDay Grass 3D, FieldTurf Revolution, andSportexe Omnigrass 51 under three normal loads (vertical forces) of 787, 1054, and 1321 N were measured using Pennfoot, a portable traction testing device. Of the treatments in this study, shoe type influenced rotational traction most, with differencesamong shoes being nearly four times as large as those among playing surfaces. Traction was either the same or within several Nm on each surface tested. Traction on the three synthetic turf surfaces ranged from 49.3 to 53.1 Nm and the traction level of Kentucky bluegrass was 52.3 Nm. Traction levels among shoes ranged from 43.8 to 58.6 Nm. The results of this study indicate that footwear selection has a larger effect on rotational traction, and potentially injury risk, than the playing surfaces evaluated in this study.
机译:当运动员加速,停止和改变方向时,许多力量会传递到下肢。指示运动鞋和运动表面之间的相互作用是导致下肢受伤风险的因素。特别地,高旋转力可能导致下肢受伤增加。使用Pennfoot测量了在三种法向载荷(垂直力)为787、1054和1321 N的情况下,肯塔基州早熟禾(Poa pratensis L。),AstroTurf GameDay Grass 3D,FieldTurf Revolution和Sportport Omnigrass 51上的八把不同开裂鞋产生的旋转牵引力。 ,一种便携式牵引力测试设备。在这项研究中,鞋子的类型对旋转牵引力的影响最大,鞋子之间的差异几乎是运动表面之间差异的四倍。在每个测试表面上的牵引力相同或在几Nm以内。在三个人造草皮表面上的牵引力范围为49.3至53.1 Nm,肯塔基草的牵引力水平为52.3 Nm。鞋子之间的牵引力范围为43.8至58.6 Nm。这项研究的结果表明,与本研究评估的运动表面相比,选择鞋类对旋转牵引力和潜在的伤害风险影响更大。

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