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首页> 外文期刊>Journal of Sports Medicine and Physical Fitness >Landing models for volleyball players: a longitudinal evaluation
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Landing models for volleyball players: a longitudinal evaluation

机译:排球运动员着陆模型:纵向评估

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The purpose of the study was to longitudinally evaluate lower extremity landing performance of elite volleyball players. Seven female members of a Division Ⅰ NCAA volleyball team completed three data collection sessions (pre-, post-, off-season) during which they performed block-jumps on a dual force platform system (1000 Hz) while being simultaneously videotaped from the right sagittal view (200 Hz). Selected kinetic and lower extremity kinematic variables were calculated. Three dependent variables representing landing impact were identified: first (F 1) and second (F 2) maximum vertical force and knee joint range of motion (K_(ROM)). A non-landing performance measure, jump height was also evaluated. Results of repeated measures univariate ANOVAs identified a significant (p < 0.05) difference for test session for K_(ROM) suggesting a kinematic change in landing performance across the season. Multiple regression models to predict landing impact identified 88.1 and 98.3% explained variance for F1 and F2 with no significant K_(ROM) model identified. F1 was predicted by ankle joint angular velocity during the jump while F2 was best predicted by jump phase braking impulse. Application of the group prediction equations to individual athletes produced differential results across subjects, suggesting the need to tailor the model to the athlete. The results further suggest training/practice-related kinematic differences and have implications for training and assessment of individuals who perform dynamic landing activities.
机译:这项研究的目的是纵向评估精英排球运动员的下肢着陆性能。 Ⅰ级NCAA排球队的七名女性成员完成了三个数据收集阶段(淡季前,季后,休赛期),在此期间,他们在双力平台系统(1000 Hz)上进行了块跳跃,同时从右侧同时进行了录像矢状面(200 Hz)。计算选定的动力学和下肢运动学变量。确定了代表着陆撞击的三个因变量:第一(F 1)和第二(F 2)最大垂直力以及膝关节运动范围(K_(ROM))。还评估了非着陆性能指标,跳跃高度。重复测量的单变量方差分析结果表明,K_(ROM)的测试时段存在显着差异(p <0.05),表明整个季节着陆性能发生了动态变化。预测回归影响的多元回归模型确定了F1和F2的88.1%和98.3%的解释方差,未发现明显的K_(ROM)模型。 F1是由跳跃过程中的踝关节角速度预测的,而F2是由跳跃阶段的制动脉冲预测的。将组预测方程式应用于单个运动员会产生跨受试者的差异结果,这表明需要为运动员量身定制模型。结果进一步表明了与训练/实践相关的运动学差异,并且对进行动态着陆活动的个人的训练和评估具有影响。

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