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首页> 外文期刊>Journal of Biomechanical Science and Engineering >Brain injury risk estimation of collegiate football player based on game video of concussion suspected accident
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Brain injury risk estimation of collegiate football player based on game video of concussion suspected accident

机译:基于脑震荡事故游戏视频的大学足球运动员脑损伤风险评估

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References(28) The collision accident in collegiate football game was simulated based on the game video and the concussive impact on the head was analyzed. First, the collision motion of players was reproduced based on the video by using motion analysis, and the translational and rotational velocities, relative position and contact location of the struck and the striking players’ heads just before the collision were calculated. Then the data obtained were input to two helmeted finite element (FE) human head models as the initial condition, and the brain injury risk was evaluated by using the impact analysis. The FE helmet model was validated by a drop test of the helmet in which the head impactor was embedded. In the present study, two concussion suspected accident cases were analyzed; then the concussion was evaluated by ten mechanical parameters generated inside the skull caused by the collision. The injury risk evaluated by multi parameters belonged to the dangerous range that may cause concussion and was consistent with the diagnosis of the medical team doctor. The brain injury risk can be successfully estimated by the reconstructed simulation of the game video and FE analysis. To our knowledge, this study is the first attempt in Japan to estimate the brain injury risk systematically by a combination of game video analysis which is originally introduced for the players’ health care and FE analysis by helmeted human head model. In the future, brain injury risk caused by an accident can be evaluated with higher accuracy by analyzing more accident cases.
机译:参考文献(28)基于比赛视频模拟了大学橄榄球比赛中的撞车事故,并分析了脑震荡对头部的影响。首先,通过使用运动分析,基于视频再现玩家的碰撞动作,并计算碰撞发生前的平移和旋转速度,被击打者与被击打者头部的相对位置和接触位置。然后将获得的数据输入到两个头盔式有限元(FE)人体头部模型中作为初始条件,并通过使用影响分析评估脑部受伤的风险。 FE头盔模型通过嵌入头部撞击器的头盔的跌落测试进行了验证。在本研究中,分析了两个脑震荡可疑事故案例;然后通过碰撞在颅骨内部产生的十个机械参数评估脑震荡。通过多参数评估的伤害风险属于可能引起脑震荡的​​危险范围,与医疗队医生的诊断相符。通过游戏视频的重建模拟和有限元分析,可以成功地估计出脑部受伤的风险。据我们所知,这项研究是日本首次尝试通过结合游戏视频分析来系统地评估脑部受伤的风险,游戏视频分析最初是为球员的健康护理而引入的,并且是通过头盔式人头模型进行的有限元分析。将来,可以通过分析更多的事故案例来更准确地评估由事故引起的脑损伤风险。

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