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Head injuries due to unrestrained objects during frontal collisions

机译:正面碰撞时由于不受约束的物体而导致头部受伤

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This paper evaluates the consequences of the impact of an unrestrained object against the head of vehicle occupant during a frontal crash by means of a computational head-neck biomechanical model. The correct positioning of head restraints can partially protect the rear side of the head, but there is still a significant probability of being injured. However, because head restraints are typically not properly adjusted as whiplash studies have shown, the probability of being impacted by an unrestrained object during a frontal crash is noticeably high and hence the risk of being injured is also high. In this work, head injury risk is evaluated through the Head Injury Criterion (HIC), by simulating a complete head-neck biomechanical model with realistic motion under frontal crash condition. The model developed includes all cervical vertebrae, intervertebral discs, ligaments and muscles. The model was validated against experimental data. Results have shown that the risk of severe head injury in frontal collision due to unrestrained objects cannot be neglected. The risk is directly related to the mass of the impact object, the relative velocity between the object and the head and the incorrect use of the head restraint.
机译:本文通过计算的头颈生物力学模型评估了正面碰撞期间不受约束的物体对乘员头部的撞击的后果。头枕的正确定位可以部分保护头部的后侧,但仍有很大的受伤可能性。但是,由于如鞭打研究所显示的那样,通常不能适当地调节头枕,因此在正面碰撞期间受到不受约束的物体撞击的可能性非常高,因此受伤的风险也很高。在这项工作中,通过模拟在额头碰撞情况下具有逼真的运动的完整的头颈部生物力学模型,通过头部受伤标准(HIC)评估了头部受伤的风险。开发的模型包括所有颈椎,椎间盘,韧带和肌肉。该模型已针对实验数据进行了验证。结果表明,不能忽视因不受约束的物体而在正面碰撞中造成严重头部受伤的风险。风险与撞击物体的质量,物体与头部之间的相对速度以及正确使用头部保护装置直接相关。

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