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首页> 外文期刊>Journal of biomechanical engineering. >Biomechanical Evaluations of Ocular Injury Risk for Blast Loading
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Biomechanical Evaluations of Ocular Injury Risk for Blast Loading

机译:爆破荷载电脑损伤风险的生物力学评价

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摘要

Ocular trauma is one of the most common types of combat injuries resulting from the exposure of military personnel with improvised explosive devices. The injury mechanism associated with the primary blast wave is poorly understood. We employed a three-dimensional computational model, which included the main internal ocular structures of the eye, spatially varying thickness of the cornea-scleral shell, and nonlinear tissue properties, to calculate the intraocular pressure and stress state of the eye wall and internal ocular structure caused by the blast. The intraocular pressure and stress magnitudes were applied to estimate the injury risk using existing models for blunt impact and blast loading. The simulation results demonstrated that blast loading can induce significant stresses in the different components of the eyes that correlate with observed primary blast injuries in animal studies. Different injury models produced widely different injury risk predictions, which highlights the need for experimental studies evaluating mechanical and functional damage to the ocular structures caused by the blast loading.
机译:眼外伤是军事人员与简易爆炸装置的曝光产生的最常见类型的战斗损伤之一。与原发性爆发波有关的伤害机制很差。我们采用了一种三维计算模型,包括眼睛的主要内部眼部结构,角膜巩膜壳的空间不同厚度,以及非线性组织特性,计算眼壁的眼压和应力状态和内部眼镜爆炸引起的结构。使用现有模型施加人工压力和应力幅度来估计耐磨型撞击和喷砂载荷的损伤风险。模拟结果表明,喷砂负载可以引起与动物研究中观察到的原发性爆破损伤相关的眼睛的不同组分的显着应力。不同的伤害模型产生了广泛不同的伤害风险预测,这突出了对由爆破载荷引起的眼部结构的机械和功能损伤评估了实验研究的需要。

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