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Preparatory Body State before Reacting to an Opponent: Short-Term Joint Torque Fluctuation in Real-Time Competitive Sports

机译:对对手做出反应之前的准备身体状态:实时竞技体育中的短期关节扭矩波动

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摘要

In a competitive sport, the outcome of a game is determined by an athlete’s relationship with an unpredictable and uncontrolled opponent. We have previously analyzed the preparatory state of ground reaction forces (GRFs) dividing non-weighted and weighted states (i.e., vertical GRFs below and above 120% of body weight, respectively) in a competitive ballgame task and demonstrated that the non-weighted state prevented delay of the defensive step and promoted successful guarding. However, the associated kinetics of lower extremity joints during a competitive sports task remains unknown. The present study aims to investigate the kinetic characteristics of a real-time competitive sport before movement initiation. As a first kinetic study on a competitive sport, we initially compared the successful defensive kinetics with a relatively stable preparatory state and the choice-reaction sidestep as a control movement. Then, we investigated the kinetic cause of the outcome in a 1-on-1 dribble in terms of the preparatory states according to our previous study. The results demonstrated that in successful defensive motions in the non-weighted state guarding trial, the times required for the generation of hip abduction and three extension torques for the hip, knee, and ankle joints were significantly shortened compared with the choice-reaction sidestep, and hip abduction and hip extension torques were produced almost simultaneously. The sport-specific movement kinetics emerges only in a more-realistic interactive experimental setting. A comparison of the outcomes in the 1-on-1 dribble and preparatory GRF states showed that, in the non-weighted state, the defenders guarded successfully in 68.0% of the trials, and the defender’s initiation time was earlier than that in the weighted state (39.1%). In terms of kinetics, the root mean squares of the derivative of hip abduction and three extension torques in the non-weighted state were smaller than those in the weighted state, irrespective of the outcome. These results indicate that the preparatory body state as explained by short-term joint torque fluctuations before the defensive step would help explain the performance in competitive sports, and will give insights into understanding human adaptive behavior in unpredicted and uncontrolled environments.
机译:在一项竞技运动中,比赛的结果取决于运动员与无法预测且不受控制的对手之间的关系。我们之前已经分析了在竞争性比赛中将地面反作用力(GRF)的准备状态分为非加权状态和加权状态(即,垂直GRF分别低于和高于体重的120%),并证明了非加权状态防止延误防御步骤,并促进了成功的守卫。但是,在一项竞技运动任务中,下肢关节的相关动力学仍然未知。本研究旨在调查运动开始前实时竞技运动的动力学特征。作为一项关于竞技运动的首次动力学研究,我们首先将成功的防守动力学与相对稳定的准备状态和选择反应回避作为控制动作进行了比较。然后,根据我们以前的研究,我们根据准备状态调查了一对一运球结果的动力学原因。结果表明,在不加重状态护卫试验中成功的防御运动中,与选择反应式回避相比,产生髋关节外展和髋,膝和踝关节三倍伸展扭矩所需的时间大大缩短,髋关节外展和髋关节伸展扭矩几乎同时产生。特定于运动的运动动力学仅在更现实的交互式实验环境中出现。对一对一运球和预备GRF状态下的结果进行的比较表明,在非加权状态下,辩护者在68.0%的试验中成功守卫,并且辩护者的发起时间比加权前更早。状态(39.1%)。就动力学而言,无论结果如何,未加权状态下髋外展导数和三个伸展转矩的均方根均小于加权状态下的均方根。这些结果表明,在防御步骤之前由短期关节扭矩波动所解释的预备身体状态将有助于解释竞技运动中的表现,并将提供洞察力以了解人类在不可预测和不受控制的环境中的适应行为。

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