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A mouse model of ocular blast injury that induces closed globe anterior and posterior pole damage

机译:诱发爆炸性前球和后球闭合性损伤的眼球爆炸小鼠模型

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We developed and characterized a mouse model of primary ocular blast injury. The device consists of: a pressurized air tank attached to a regulated paintball gun with a machined barrel; a chamber that protects the mouse from direct injury and recoil, while exposing the eye; and a secure platform that enables fine, controlled movement of the chamber in relation to the barrel. Expected pressures were calculated and the optimal pressure transducer, based on the predicted pressures, was positioned to measure output pressures at the location where the mouse eye would be placed. Mice were exposed to one of three blast pressures (23.6, 26.4, or 30.4 psi). Gross pathology, intraocular pressure, optical coherence tomography, and visual acuity were assessed 0, 3, 7, 14, and 28 days after exposure. Contralateral eyes and non-blast exposed mice were used as controls. We detected increased damage with increased pressures and a shift in the damage profile over time. Gross pathology included corneal edema, corneal abrasions, and optic nerve avulsion. Retinal damage was detected by optical coherence tomography and a deficit in visual acuity was detected by optokinetics. Our findings are comparable to those identified in Veterans of the recent wars with closed eye injuries as a result of blast exposure. In summary, this is a relatively simple system that creates injuries with features similar to those seen in patients with ocular blast trauma. This is an important new model for testing the short-term and long-term spectrum of closed globe blast injuries and potential therapeutic interventions.
机译:我们开发并表征了原发性眼胚爆炸损伤的小鼠模型。该设备包括:加压气罐,该气罐连接到带有机枪管的调节彩弹枪上;在暴露眼睛的同时,保护鼠标免受直接伤害和后坐的腔室;一个安全的平台,可以使腔室相对于枪管进行精确,受控的移动。计算预期压力,并根据预测压力放置最佳压力传感器,以测量鼠标放置位置处的输出压力。将小鼠暴露于三种爆炸压力之一(23.6、26.4或30.4 psi)。暴露后0、3、7、14和28天评估总体病理,眼内压,光学相干断层扫描和视敏度。对侧眼和未暴露于非爆破的小鼠用作对照。我们发现随着压力的增加以及随着时间的推移损坏曲线的变化,损坏增加了。大体病理包括角膜水肿,角膜擦伤和视神经撕脱。通过光学相干断层扫描检测视网膜损伤,通过光动力学检测视力缺陷。我们的发现与最近因战争爆炸而闭眼受伤的退伍军人中发现的发现相当。总而言之,这是一个相对简单的系统,其产生的损伤具有与眼部爆炸伤患者相似的特征。这是一种重要的新模型,可用于测试封闭式爆炸冲击波的短期和长期频谱以及潜在的治疗干预措施。

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