首页> 外文期刊>Journal of biomechanical engineering. >Protective Headgear Attenuates Forces on the Inner Table and Pressure in the Brain Parenchyma During Blast and Impact: An Experimental Study Using a Simulant-Based Surrogate Model of the Human Head
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Protective Headgear Attenuates Forces on the Inner Table and Pressure in the Brain Parenchyma During Blast and Impact: An Experimental Study Using a Simulant-Based Surrogate Model of the Human Head

机译:防护头盔在爆炸和影响过程中衰减脑实质内部表和压力的力:使用基于模拟的人头代理模型的实验研究

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摘要

Military personnel sustain head and brain injuries as a result of ballistic, blast, and blunt impact threats. Combat helmets are meant to protect the heads of these personnel during injury events. Studies show peak kinematics and kinetics are attenuated using protective headgear during impacts; however, there is limited experimental biomechanical literature that examines whether or not helmets mitigate peak mechanics delivered to the head and brain during blast. While the mechanical links between blast and brain injury are not universally agreed upon, one hypothesis is that blast energy can be transmitted through the head and into the brain. These transmissions can lead to rapid skull flexure and elevated pressures in the cranial vault, and, therefore, may be relevant in determining injury likelihood. Therefore, it could be argued that assessing a helmet for the ability to mitigate mechanics may be an appropriate paradigm for assessing the potential protective benefits of helmets against blast. In this work, we use a surrogate model of the head and brain to assess whether or not helmets and eye protection can alter mechanical measures during both head-level face-on blast and high forehead blunt impact events. Measurements near the forehead suggest head protection can attenuate brain parenchyma pressures by as much as 49% during blast and 52% during impact, and forces on the inner table of the skull by as much as 80% during blast and 84% during impact, relative to an unprotected head.
机译:军事人员随着弹道,爆炸和钝性威胁而维持头脑伤害。战斗头盔是在伤害事件期间保护这些人员的头部。研究显示峰值运动学和动力学在撞击期间使用防护头盔衰减;然而,存在有限的实验生物力学文献,用于在爆炸期间检查头盔是否减轻峰值力学的峰值力学。虽然爆炸和脑损伤之间的机械联系不普遍同意,但一个假设是可以通过头部和大脑传递爆破能量。这些变速器可导致颅骨弯曲的快速颅骨弯曲和升高的压力,因此可以在确定损伤可能性方面是相关的。因此,可以认为,评估用于减轻机械学的能力的头盔可能是适当的范例,用于评估头盔对爆炸的潜在保护益处。在这项工作中,我们使用头部和大脑的代理模型来评估头盔和眼睛保护是否可以改变在头部面部爆炸和高额额头钝的冲击事件中的机械措施。前额附近的测量表明头部保护可以在爆炸过程中衰减脑实质压力和撞击期间的52%,并且在爆炸期间,在爆炸期间,在爆炸期间的80%的力量,相对的84%的血管内部的力量高达84%一个不受保护的头部。

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