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Three-Dimensional Lower Extremity Joint Loading in a Carved Ski and Snowboard Turn: A Pilot Study

机译:三维下肢关节​​装载在雕刻的滑雪板和滑雪板转弯:试点研究

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A large number of injuries to the lower extremity occur in skiing and snowboarding. Due to the difficulty of collecting 3D kinematic and kinetic data with high accuracy, a possible relationship between injury statistic and joint loading has not been studied. Therefore, the purpose of the current study was to compare ankle and knee joint loading at the steering leg between carved ski and snowboard turns. Kinetic data were collected using mobile force plates mounted under the toe and heel part of the binding on skies or snowboard (KISTLER). Kinematic data were collected with five synchronized, panning, tilting, and zooming cameras. An extended version of the Yeadon model was applied to calculate inertial properties of the segments. Ankle and knee joint forces and moments were calculated using inverse dynamic analysis. Results showed higher forces along the longitudinal axis in skiing and similar forces for skiing and snowboarding in anterior-posterior and mediolateral direction. Joint moments were consistently greater during a snowboard turn, but more fluctuations were observed in skiing. Hence, when comparing joint loading between carved ski and snowboard turns, one should differentiate between forces and moments, including the direction of forces and moments and the turn phase.
机译:在滑雪和滑雪板上发生了大量的下肢伤害。由于难以高精度地收集3D运动和动力学数据,尚未研究损伤统计和联合载荷之间的可能关系。因此,目前研究的目的是将脚踝和膝关节加载在雕刻的滑雪板和滑雪板转弯之间进行比较。使用安装在脚趾和滑雪板(KISTLER)上的脚趾和脚跟部分下的移动力板收集动力学数据。采用五个同步,平移,倾斜和缩放相机收集了运动数据。应用了Yeadon模型的扩展版本来计算段的惯性特性。使用逆动力分析计算脚踝和膝关节和矩。结果显示沿着滑雪和类似力的纵向轴线的较高力,用于在前后和中间方向上滑雪和滑雪板。在滑雪板转弯期间,联合时刻始终如一,但在滑雪中观察到更多波动。因此,当比较雕刻滑雪板和滑雪板转弯之间的关节装载时,应该区分力和时刻,包括力方向和时刻和转弯阶段。

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