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在匹配的实验性眼部撞击模拟中对不同射弹的评估。

Evaluation of different projectiles in matched experimental eye impact simulations.

作者信息

Weaver Ashley A, Kennedy Eric A, Duma Stefan M, Stitzel Joel D

机构信息

Center for Injury Biomechanics, Virginia Tech-Wake Forest University, Winston-Salem, NC 27157, USA.

出版信息

J Biomech Eng. 2011 Mar;133(3):031002. doi: 10.1115/1.4003328.

Abstract

Eye trauma results in 30,000 cases of blindness each year in the United States and is the second leading cause of monocular visual impairment. Eye injury is caused by a wide variety of projectile impacts and loading scenarios with common sources of trauma being motor vehicle crashes, military operations, and sporting impacts. For the current study, 79 experimental eye impact tests in literature were computationally modeled to analyze global and localized responses of the eye to a variety of blunt projectile impacts. Simulations were run with eight different projectiles (airsoft pellets, baseball, air gun pellets commonly known as BBs, blunt impactor, paintball, aluminum, foam, and plastic rods) to characterize effects of the projectile size, mass, geometry, material properties, and velocity on eye response. This study presents a matched comparison of experimental test results and computational model outputs including stress, energy, and pressure used to evaluate risk of eye injury. In general, the computational results agreed with the experimental results. A receiver operating characteristic curve analysis was used to establish the stress and pressure thresholds that best discriminated for globe rupture in the matched experimental tests. Globe rupture is predicted by the computational simulations when the corneoscleral stress exceeds 17.21 MPa or the vitreous pressure exceeds 1.01 MPa. Peak stresses were located at the apex of the cornea, the limbus, or the equator depending on the type of projectile impacting the eye. A multivariate correlation analysis revealed that area-normalized kinetic energy was the best single predictor of peak stress and pressure. Additional incorporation of a relative size parameter that relates the projectile area to the area of the eye reduced stress response variability and may be of importance in eye injury prediction. The modeling efforts shed light on the injury response of the eye when subjected to a variety of blunt projectile impacts and further validate the eye model's ability to predict globe rupture. Results of this study are relevant to the design and regulation of safety systems and equipment to protect against eye injury.

摘要

在美国,眼外伤每年导致30000例失明病例,是单眼视力损害的第二大主要原因。眼外伤由各种各样的投射物撞击和加载情况引起,常见的外伤来源包括机动车碰撞、军事行动和体育撞击。在本研究中,对文献中的79次实验性眼部撞击测试进行了计算建模,以分析眼睛对各种钝性投射物撞击的整体和局部反应。使用八种不同的投射物(气枪软弹、棒球、通常称为BB弹的气枪子弹、钝性撞击器、彩弹、铝、泡沫和塑料棒)进行模拟,以表征投射物的尺寸、质量、几何形状、材料特性和速度对眼睛反应的影响。本研究对实验测试结果和计算模型输出进行了匹配比较,包括用于评估眼外伤风险的应力、能量和压力。总体而言,计算结果与实验结果一致。使用接收器操作特征曲线分析来确定在匹配的实验测试中最能区分眼球破裂的应力和压力阈值。当角膜巩膜应力超过17.21兆帕或玻璃体压力超过1.01兆帕时,计算模拟预测会发生眼球破裂。根据撞击眼睛的投射物类型,峰值应力位于角膜顶点、角膜缘或赤道处。多变量相关分析表明,面积归一化动能是峰值应力和压力的最佳单一预测指标。额外纳入一个将投射物面积与眼睛面积相关联的相对尺寸参数,可降低应力反应的变异性,这在眼外伤预测中可能很重要。这些建模工作揭示了眼睛在受到各种钝性投射物撞击时的损伤反应,并进一步验证了眼睛模型预测眼球破裂的能力。本研究结果与预防眼外伤的安全系统和设备的设计及监管相关。

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