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额窦容积对额部区域创伤的影响。一项有限元研究。

Trauma of the Frontal Region Is Influenced by the Volume of Frontal Sinuses. A Finite Element Study.

作者信息

Pajic Srbislav S, Antic Svetlana, Vukicevic Arso M, Djordjevic Nenad, Jovicic Gordana, Savic Zivorad, Saveljic Igor, Janović Aleksa, Pesic Zoran, Djuric Marija, Filipovic Nenad

机构信息

Clinic for Neurosurgery, Clinical Center of SerbiaBelgrade, Serbia.

Center for Radiological Diagnostics, School of Dentistry, University of BelgradeBelgrade, Serbia.

出版信息

Front Physiol. 2017 Jul 11;8:493. doi: 10.3389/fphys.2017.00493. eCollection 2017.

Abstract

Anatomy of frontal sinuses varies individually, from differences in volume and shape to a rare case when the sinuses are absent. However, there are scarce data related to influence of these variations on impact generated fracture pattern. Therefore, the aim of this study was to analyse the influence of frontal sinus volume on the stress distribution and fracture pattern in the frontal region. The study included four representative Finite Element models of the skull. Reference model was built on the basis of computed tomography scans of a human head with normally developed frontal sinuses. By modifying the reference model, three additional models were generated: a model without sinuses, with hypoplasic, and with hyperplasic sinuses. A 7.7 kN force was applied perpendicularly to the forehead of each model, in order to simulate a frontal impact. The results demonstrated that the distribution of impact stress in frontal region depends on the frontal sinus volume. The anterior sinus wall showed the highest fragility in case with hyperplasic sinuses, whereas posterior wall/inner plate showed more fragility in cases with hypoplasic and undeveloped sinuses. Well-developed frontal sinuses might, through absorption of the impact energy by anterior wall, protect the posterior wall and intracranial contents.

摘要

额窦的解剖结构因人而异,从体积和形状的差异到鼻窦缺失这种罕见情况都有。然而,关于这些变异对撞击产生的骨折模式的影响的数据很少。因此,本研究的目的是分析额窦体积对额部应力分布和骨折模式的影响。该研究包括四个具有代表性的颅骨有限元模型。参考模型是基于一个额窦正常发育的人头的计算机断层扫描构建的。通过修改参考模型,生成了另外三个模型:一个没有鼻窦的模型、一个鼻窦发育不全的模型和一个鼻窦过度发育的模型。为了模拟额部撞击,向每个模型的前额垂直施加7.7 kN的力。结果表明,额部撞击应力的分布取决于额窦体积。在鼻窦过度发育的情况下,鼻窦前壁显示出最高的脆弱性,而在鼻窦发育不全和未发育的情况下,后壁/内板显示出更大的脆弱性。发育良好的额窦可能通过前壁吸收撞击能量,保护后壁和颅内内容物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6a1/5504181/667eb5fe8596/fphys-08-00493-g0001.jpg

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