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钝性颅颌面创伤相关视网膜损伤的力学评估:一项模拟分析

Mechanical Evaluation of Retinal Damage Associated With Blunt Craniomaxillofacial Trauma: A Simulation Analysis.

作者信息

Geng Xiaoqi, Liu Xiaoyu, Wei Wei, Wang Yawei, Wang Lizhen, Chen Kinon, Huo Hongqiang, Zhu Yuanjie, Fan Yubo

机构信息

Key Laboratory for Biomechanics and Mechanobiology of Ministry of Education, School of Biological Science and Medical Engineering, Beihang University, Beijing, China.

Beijing Advanced Innovation Centre for Biomedical Engineering, Beihang University, Beijing, China.

出版信息

Transl Vis Sci Technol. 2018 Jun 7;7(3):16. doi: 10.1167/tvst.7.3.16. eCollection 2018 May.

Abstract

PURPOSE

To evaluate retinal damage as the result of craniomaxillofacial trauma and explain its pathogenic mechanism using finite element (FE) simulation.

METHODS

Computed tomography (CT) images of an adult man were obtained to construct a FE skull model. A FE skin model was built to cover the outer surface of the skull model. A previously validated FE right eye model was symmetrically copied to create a FE left eye model, and both eye models were assembled to the skull model. An orbital fat model was developed to fill the space between the eye models and the skull model. Simulations of a ball-shaped object striking the frontal bone, temporal bone, brow, and cheekbones were performed, and the resulting absorption of the impact energy, intraocular pressure (IOP), and strains on the macula and ora serrata were analyzed to evaluate retinal injuries.

RESULTS

Strain was concentrated in the macular regions (0.18 in average) of both eyes when the frontal bone was struck. The peak strain on the macula of the struck-side eye was higher than that of the other eye (>100%) when the temporal bone was struck, whereas there was little difference (<10%) between the two eyes when the brow and cheekbones were struck. Correlation analysis showed that the retinal strain time histories were highly correlated with the IOP time histories ( 0.8 and 0.000 in all simulation cases).

CONCLUSIONS

The risk of retinal damage is variable in craniomaxillofacial trauma depending on the struck region, and the damage is highly related to IOP variation caused by indirect blunt eye trauma.

TRANSLATIONAL RELEVANCE

This finite element eye model allows us to evaluate and understand the indirect ocular injury mechanisms in craniomaxillofacial trauma for better clinical diagnosis and treatment.

摘要

目的

评估颅颌面创伤导致的视网膜损伤,并通过有限元(FE)模拟解释其致病机制。

方法

获取一名成年男性的计算机断层扫描(CT)图像,以构建有限元颅骨模型。构建有限元皮肤模型覆盖颅骨模型的外表面。将先前验证过的有限元右眼模型对称复制以创建有限元左眼模型,然后将两个眼睛模型组装到颅骨模型上。开发眼眶脂肪模型以填充眼睛模型与颅骨模型之间的空间。对球形物体撞击额骨、颞骨、眉部和颧骨进行模拟,并分析由此产生的冲击能量吸收、眼内压(IOP)以及黄斑和锯齿缘上的应变,以评估视网膜损伤。

结果

撞击额骨时,双眼黄斑区域均出现应变集中(平均为0.18)。撞击颞骨时,受撞击侧眼睛黄斑处的峰值应变高于另一只眼睛(>100%),而撞击眉部和颧骨时,两只眼睛之间的差异很小(<10%)。相关性分析表明,在所有模拟案例中,视网膜应变时间历程与眼内压时间历程高度相关(分别为0.8和0.000)。

结论

颅颌面创伤中视网膜损伤的风险因撞击部位而异,且损伤与间接钝性眼外伤引起的眼内压变化高度相关。

转化相关性

这种有限元眼睛模型使我们能够评估和理解颅颌面创伤中的间接眼损伤机制,以实现更好的临床诊断和治疗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/45ba/5991806/1e30acbfd4e9/i2164-2591-7-3-16-f01.jpg

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