首页> 外文OA文献 >Assessment of the Effects of Acute and Repeated Exposure to Blast Overpressure in Rodents: Toward a Greater Understanding of Blast and the Potential Ramifications for Injury in Humans Exposed to Blast
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Assessment of the Effects of Acute and Repeated Exposure to Blast Overpressure in Rodents: Toward a Greater Understanding of Blast and the Potential Ramifications for Injury in Humans Exposed to Blast

机译:评估啮齿动物急性和反复接触爆炸超压的影响:更好地了解爆炸以及暴露于爆炸中的人的潜在伤害后果

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摘要

Mild traumatic brain injury (mTBI) resulting from exposure to improvised explosive devices (IEDs) has fueled a requirement to develop animals models that mirror this condition using exposure to blast overpressure (BOP). En route to developing a model of repeated exposure to BOP we sought to initially characterize the effects of acute BOP exposure in rodents, focusing specifically on the levels of BOP exposure that produced clinical mTBI symptoms. We first measured BOP effects on gross motor function on a balance beam. Separate groups of unanesthetized rats were exposed (in different orientations) to 36.6, 74.5, and 116.7 kPa BOP exposure inside a pneumatically driven shock tube. Results demonstrated that rats exposed to 116.7 kPa demonstrated transient alterations or loss of consciousness indicated by a transient loss of righting and by increased latencies on the balance beam. The 116.7 kPa exposure was the threshold for overt pathology for acute BOP exposure with approximately 30% of rats presenting with evidence of subdural hemorrhage and cortical contusions. All animals exposed to 116.7 kPa BOP manifested evidence of significant pulmonary hemorrhage. Anterograde memory deficits were observed in rats exposed to 74.5 kPa facing the BOP wave and rats exposed to 116.7 kPa in the lateral (side) orientation. We next assessed repeated exposure to either lateral or frontal 36.6 kPa BOP in anesthetized rats, once per day for 12 days. Results showed that repeated exposure in the frontal, but not side, orientation to the BOP wave produced a transitory learning deficit on a Morris water maze task as shown by significantly longer latencies to reach the submerged platform in the second and third blocks of a four block session. Implications of these data are discussed in relation to the manifestation of mTBI in military personnel exposed to IEDs. Finally, we suggest that there are multiple types of long-term brain injury from blast exposure.
机译:暴露于简易爆炸装置(IED)导致的轻度创伤性脑损伤(mTBI)引发了开发动物模型以暴露于爆炸超压(BOP)来反映这种情况的需求。在建立重复暴露于BOP的模型的过程中,我们试图初步表征啮齿动物中急性BOP暴露的影响,特别关注产生临床mTBI症状的BOP暴露水平。我们首先在平衡木上测量了BOP对总运动功能的影响。单独分组的未麻醉大鼠在气动冲击管内分别暴露(以不同的方向)暴露于36.6、74.5和116.7 kPa BOP。结果表明,暴露于116.7kkPa的大鼠表现出短暂的改变或意识丧失,其表现为暂时的扶正力丧失和平衡木上的延迟增加。 116.7kkPa暴露是急性BOP暴露的明显病理学阈值,约30%的大鼠表现为硬膜下出血和皮质挫伤。暴露于116.7 kPa BOP的所有动物均表现出明显的肺出血迹象。在暴露于BOP波的74.5 kPa的大鼠和在侧面(侧面)暴露于116.7 kPa的大鼠中观察到顺行性记忆缺陷。接下来,我们评估了在麻醉的大鼠中每天一次重复暴露于外侧或额侧36.6 kPa BOP的情况,每天一次,持续12 d天。结果表明,反复暴露在正面但不是侧面的BOP波中,在莫里斯水迷宫任务上产生了短暂的学习缺陷,这表现为四个区块的第二个和第三个区块到达水下平台的等待时间明显更长会议。讨论了与暴露于IED的军事人员中mTBI的表现有关的这些数据的含义。最后,我们建议爆炸暴露会导致多种类型的长期脑损伤。

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