首页> 外文期刊>British journal of sports medicine >Sidecut radius and kinetic energy Equipment designed to reduce risk of severe traumatic knee injuries in alpine giant slalom ski racing
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Sidecut radius and kinetic energy Equipment designed to reduce risk of severe traumatic knee injuries in alpine giant slalom ski racing

机译:侧切半径和动能旨在减少高山大回转滑雪比赛中严重外伤性膝盖受伤风险的设备

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Background Kinetic energy (Ekin) increases with speed by the power of 2 and is considered a major risk factor for injuries in alpine ski racing. There is no empirical knowledge about the effect of ski geometry on Ekin. Consequently, the aim of this study was to investigate the influence of sidecut radius on the progress of Ekin while skiing through a multigate section in giant slalom (GS). Methods 5 European-Cup level athletes skied on three different pairs of GS skis varying in sidecut radii (30, 35 and 40 m). Each athlete's position over time within a six gate section (including flat and steep terrain) was captured by the use of a differential Global Navigational Satellite System. Ekin, speed, time and path length were analysed for each pair of skis used. Results When using skis with greater sidecut radius, average Ekin was significantly lower over the entire six gate section, but not locally at every turn cycle. Particular decreases of Ekin were observed for both turns on the flat terrain, as well as for the turn at the terrain transition and the first turn on the steep terrain. The observed decreases in Ekin were found to be primarily explainable by increases in turn time. Conclusions With respect to typical sport mechanisms that cause severe knee injuries, using skis with greater sidecut radius potentially provides additional injury preventative gain, particularly in specific areas within a run. However, this injury preventative gain during falls in GS should not be overestimated.
机译:背景动能(Ekin)随速度增加2的幂,被认为是高山滑雪比赛中受伤的主要危险因素。没有关于滑雪几何形状对Ekin的影响的经验知识。因此,本研究的目的是调查在大回转(GS)的多门滑雪时,侧切半径对Ekin前进的影响。方法5名欧洲杯一级运动员在侧切半径(30、35和40 m)上的三对不同的GS滑雪板上滑行。通过使用差分全球导航卫星系统,可以捕获每个运动员在六个登机口区域(包括平坦和陡峭的地形)内随时间的位置。对使用的每副滑雪板的Ekin,速度,时间和路径长度进行了分析。结果当使用侧切半径较大的滑雪板时,整个六个闸门截面的平均Ekin均显着降低,但并非每个转弯周期都局部降低。对于平坦地形上的两个转弯,以及地形过渡和陡峭地形上的第一个转弯,都观察到Ekin的特别下降。发现观察到的Ekin下降主要可以通过转身时间的增加来解释。结论对于导致严重膝盖受伤的典型运动机制,使用具有较大侧切半径的滑雪板可能会提供额外的预防伤害收益,尤其是在跑步中的特定区域。但是,在GS下降时这种预防伤害的收益不应被高估。

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