首页> 美国卫生研究院文献>Journal of Neurotrauma >Rat Injury Model under Controlled Field-Relevant Primary Blast Conditions: Acute Response to a Wide Range of Peak Overpressures
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Rat Injury Model under Controlled Field-Relevant Primary Blast Conditions: Acute Response to a Wide Range of Peak Overpressures

机译:在受控的与田野相关的原爆条件下的大鼠损伤模型:对宽范围峰值超压的急性反应

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摘要

We evaluated the acute (up to 24 h) pathophysiological response to primary blast using a rat model and helium driven shock tube. The shock tube generates animal loadings with controlled pure primary blast parameters over a wide range and field-relevant conditions. We studied the biomechanical loading with a set of pressure gauges mounted on the surface of the nose, in the cranial space, and in the thoracic cavity of cadaver rats. Anesthetized rats were exposed to a single blast at precisely controlled five peak overpressures over a wide range (130, 190, 230, 250, and 290 kPa). We observed 0% mortality rates in 130 and 230 kPa groups, and 30%, 24%, and 100% mortality rates in 190, 250, and 290 kPa groups, respectively. The body weight loss was statistically significant in 190 and 250 kPa groups 24 h after exposure. The data analysis showed the magnitude of peak-to-peak amplitude of intracranial pressure (ICP) fluctuations correlates well with mortality rates. The ICP oscillations recorded for 190, 250, and 290 kPa are characterized by higher frequency (10–20 kHz) than in other two groups (7–8 kHz). We noted acute bradycardia and lung hemorrhage in all groups of rats subjected to the blast. We established the onset of both corresponds to 110 kPa peak overpressure. The immunostaining against immunoglobulin G (IgG) of brain sections of rats sacrificed 24-h post-exposure indicated the diffuse blood-brain barrier breakdown in the brain parenchyma. At high blast intensities (peak overpressure of 190 kPa or more), the IgG uptake by neurons was evident, but there was no evidence of neurodegeneration after 24 h post-exposure, as indicated by cupric silver staining. We observed that the acute response as well as mortality is a non-linear function over the peak overpressure and impulse ranges explored in this work.
机译:我们使用大鼠模型和氦气驱动的电击管评估了对原发细胞的急性(高达24 h)病理生理反应。激波管在广泛的范围和与田野相关的条件下产生具有受控的纯原始爆炸参数的动物负载。我们用一套安装在鼻子表面,颅腔和尸体大鼠胸腔内的压力计研究了生物力学负荷。麻醉的大鼠在宽范围(130、190、230、250和290kkPa)的精确控制的五个峰值超压下暴露于单一冲击波。我们观察到130和230 kPa组的死亡率为0%,190、250和290 kPa组的死亡率分别为30%,24%和100%。暴露后24 h,190和250 kPa组的体重减轻具有统计学意义。数据分析表明,颅内压(ICP)波动的峰峰值幅度与死亡率密切相关。记录的190、250和290 kPa的ICP振荡具有比其他两组(7–8 kHz)更高的频率(10–20 kHz)。我们注意到在所有遭受爆炸的大鼠中,急性心动过缓和肺出血。我们确定两者的开始都对应于110 kPa峰值超压。暴露后24 h处死的大鼠脑切片对免疫球蛋白G(IgG)的免疫染色表明脑实质中弥漫性血脑屏障破坏。在高爆炸强度下(峰值超压为190 kPa或更高),神经元会明显吸收IgG,但如铜银染色所示,在暴露后24h后没有证据表明神经变性。我们观察到,在这项工作中探索的峰值超压和脉冲范围内,急性反应以及死亡率是非线性函数。

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