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一种简化颅骨替代品的设计,其模态行为接近人类头骨。

Design of a simplified cranial substitute with a modal behavior close to that of a human skull.

作者信息

Elster Natacha, Boutillier Johanna, Bourdet Nicolas, Magnan Pascal, Naz Pierre, Willinger Rémy, Deck Caroline

机构信息

French-German Research Institute of Saint-Louis, Saint-Louis, France.

ICube Laboratory, Strasbourg University, Strasbourg, France.

出版信息

Front Bioeng Biotechnol. 2024 Mar 22;12:1297730. doi: 10.3389/fbioe.2024.1297730. eCollection 2024.

Abstract

Individuals exposed to the propagation of shock waves generated by the detonation of explosive charges may suffer Traumatic Brain Injury. The mechanism of cranial deflection is one of many hypotheses that could explain the observed brain damage. To investigate this physical phenomenon in a reproducible manner, a new simplified cranial substitute was designed with a mechanical response close to that of a human skull when subjected to this type of loading. As a first step, a Finite Element Model was employed to dimension the new substitute. The objective was indeed to obtain a vibratory behavior close to that of a dry human skull over a wide range of frequencies up to 10 kHz. As a second step, the Finite Element Model was used together with Experimental Modal Analyses to identify the vibration modes of the substitute. A shaker excited the structure via a metal rod, while a laser vibrometer recorded the induced vibrations at defined measurement points. The results showed that despite differences in material properties and geometry, the newly developed substitute has 10/13 natural frequencies in common with those of dry human skulls. When filled with a simulant of cerebral matter, it could therefore be used in future studies as an approximation to assess the mechanical response of a simplified skull substitute to a blast threat.

摘要

暴露于爆炸物爆炸产生的冲击波传播中的个体可能会遭受创伤性脑损伤。颅骨偏斜机制是众多能够解释所观察到的脑损伤的假说之一。为了以可重复的方式研究这一物理现象,设计了一种新的简化颅骨替代物,其在承受此类载荷时的机械响应接近人类头骨。第一步,采用有限元模型来确定新替代物的尺寸。目的确实是要在高达10千赫的很宽频率范围内获得接近干燥人类头骨的振动行为。第二步,将有限元模型与实验模态分析结合使用,以识别替代物的振动模式。一个振动台通过一根金属棒激励该结构,同时一台激光测振仪在规定的测量点记录诱发的振动。结果表明,尽管在材料特性和几何形状方面存在差异,但新开发的替代物与干燥人类头骨有10/13个固有频率相同。因此,当填充脑物质模拟物时,它可在未来研究中用作近似物,以评估简化颅骨替代物对爆炸威胁的机械响应。

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