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Trunk kinematics during cross country sit-skiing ergometry: Skiing strategies associated to neuromusculoskeletal impairment

机译:跨国坐滑雪中的躯干运动学:与神经肌肉骨骼损伤相关的滑雪策略

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Since trunk function plays a major role in propulsion in sit-skiers and athletes belonging to distinct classes have different abilities to control trunk muscles, the aim of this study is to evaluate how athletes personalized their skiing strategy to compensate their impairment and improve skiing effectiveness. Sixteen Paralympic sit-skiers belonging to different classes volunteered as participant. Each athlete executed two double poling tests on a ski ergometer at the maximal speed he/she can reach and the best, identified as the fastest, was considered in the analysis. A set of two passive reflective markers was used for kinematic analysis: the first marker was placed on the athlete shoulder, while the second was placed on the sledge in correspondence of the hip joint. A Vicon motion capture system with 8 cameras was used to collect the athlete's motion during the double poling tests. Forces were recorded by sensors attached to the pulling cables. For the analyses athletes were grouped concerning to the individual impairment level into: group A (LW10-LW10.5), group B (LW11-LW11.5), and group C (LW12). Per each athlete the trunk maximal forward and trunk maximal backward, the range of motion, the start and finish time of trunk movement with respect to the beginning of the poling phase were measured during each cycle, and the time between the start and the finish of trunk movement were calculated. The main results of this study were: 1) greater trunk flexion and range of motion for group C compared to group A; 2) group A started trunk movement earlier compared to group C; 3) no differences in range of motion timing. Since greater trunk flexion and range of motion allow generating higher propulsion force with low level of fatigue, it is possible to conclude that thanks to their ability in control trunk muscles athletes in group C can develop a skiing strategy which is more effective than athletes that cannot control abdominal and lumbar extensor muscles.
机译:由于树干功能起着在静坐滑雪者和属于不同类别的运动员推进的重要作用具有不同的能力来控制躯干肌肉,这项研究的目的是评估运动员如何个性化他们的滑雪策略,以弥补他们的障碍和提高滑雪效果。十六残奥会坐式滑雪属于不同类别的志愿作为参加。每个运动员执行在滑雪测力计两个双极化测试,以最大的速度,他/她能达到与最好的,确定为最快的,在分析中考虑。一组的两个无源反射标记被用于运动分析:第一标记被放置在运动员肩部,而第二个被放置在雪橇在髋关节的对应关系。有8个摄像头一个威康动作捕捉系统使用过程中的双重极化测试,以收集运动员的运动。军队被连接到牵引索传感器记录。为进行分组的分析运动员关于个体损伤级别分为:A组(LW10-LW10.5),B组(LW11-LW11.5)和C组(LW12)。每每个运动员躯干最大向前和中继线最大向后,运动的范围内,躯干运动相对于极化阶段的开始的开始和结束时间分别循环期间测量,并且开始和结束之间的时间躯干运动进行了计算。本研究的主要结果是:1)更大的躯干弯曲,并与基团A为C组的运动范围; 2)基团A开始躯干运动同期C组; 3)在运动定时的范围没有差异。由于更大的躯干弯曲和运动范围允许生成与疲劳的低电平高的推进力,有可能得出结论,由于它们在控制躯干肌肉运动员C组能力可以开发一个滑雪策略比运动员即不能更有效控制腹部和腰部伸肌。

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