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评估穿透性碎片致胫骨骨折的风险

Mapping the Risk of Fracture of the Tibia From Penetrating Fragments.

作者信息

Nguyen Thuy-Tien N, Carpanen Diagarajen, Rankin Iain A, Ramasamy Arul, Breeze Johno, Proud William G, Clasper Jonathan C, Masouros Spyros D

机构信息

Department of Bioengineering, Imperial College London, London, United Kingdom.

Royal Centre for Defence Medicine, Queen Elizabeth Hospital Birmingham, Birmingham, United Kingdom.

出版信息

Front Bioeng Biotechnol. 2020 Sep 16;8:544214. doi: 10.3389/fbioe.2020.544214. eCollection 2020.

Abstract

Penetrating injuries are commonly inflicted in attacks with explosive devices. The extremities, and especially the leg, are the most commonly affected body areas, presenting high risk of infection, slow recovery, and threat of amputation. The aim of this study was to quantify the risk of fracture to the anteromedial, posterior, and lateral aspects of the tibia from a metal fragment-simulating projectile (FSP). A gas gun system and a 0.78-g cylindrical FSP were employed to perform tests on an ovine tibia model. The results from the animal study were subsequently scaled to obtain fracture-risk curves for the human tibia using the cortical thickness ratio. The thickness of the surrounding soft tissue was also taken into account when assessing fracture risk. The lateral cortex of the tibia was found to be most susceptible to fracture, whose impact velocity at 50% risk of EF1+, EF2+, EF3+, and EF4+ fracture types - according to the modified Winquist-Hansen classification - were 174, 190, 212, and 282 m/s, respectively. The findings of this study will be used to increase the fidelity of predictive models of projectile penetration.

摘要

穿透性损伤常见于爆炸装置袭击中。四肢,尤其是腿部,是最常受影响的身体部位,存在感染风险高、恢复缓慢和截肢威胁。本研究的目的是量化模拟金属碎片射弹(FSP)对胫骨前内侧、后侧和外侧造成骨折的风险。采用气枪系统和一个0.78克的圆柱形FSP对绵羊胫骨模型进行测试。随后,利用皮质厚度比将动物研究结果进行缩放,以获得人类胫骨的骨折风险曲线。在评估骨折风险时,也考虑了周围软组织的厚度。发现胫骨外侧皮质最易发生骨折,根据改良的温奎斯特-汉森分类,EF1+、EF2+、EF3+和EF4+骨折类型50%风险时的撞击速度分别为174、190、212和282米/秒。本研究结果将用于提高射弹穿透预测模型的逼真度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7019/7525181/8a9ebe29ced5/fbioe-08-544214-g001.jpg

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