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Traumatic brain injury caused by laser-induced shock wave in rats:A novel laboratory model for studying blast-inducedtraumatic brain injury

机译:大鼠激光诱导冲击波引起的创伤性脑损伤:一种研究爆炸诱导脑损伤的新型实验室模型

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The detailed mechanism of blast-induced traumatic brain injury (bTBI) has not been revealed yet. Thus, reliable laboratory animal models for bTBI are needed to investigate the possible diagnosis and treatment for bTBI. In this study, we used laser-induced shock wave (LISW) to induce TBI in rats and investigated the histopathological similarities to actual bTBI. After craniotomy, the rat brain was exposed to a single shot of LISW with a diameter of 3 mm at various laser fluences. At 24 h after LISW exposure, perfusion fixation was performed and the extracted brain was sectioned; the sections were stained with hematoxylin-eosin. Evans blue (EB) staining was also used to evaluate disruption of the blood brain barrier. At certain laser fluence levels, neural cell injury and hemorrhagic lesions were observed in the cortex and subcortical region. However, injury was limited in the tissue region that interacted with the LISW. The severity of injury increased with increasing laser fluence and hence peak pressure of the LISW. Fluorescence originating from EB was diffusively observed in the injuries at high fluence levels. Due to the grade and spatial controllability of injuries and the histological observations similar to those in actual bTBI, brain injuries caused by LISWs would be useful models to study bTBI.
机译:尚未揭示爆炸诱导的创伤性脑损伤(BTBI)的详细机制。因此,需要用于BTBI的可靠实验室动物模型来研究BTBI的可能诊断和治疗。在这项研究中,我们使用激光诱导的冲击波(LISW)在大鼠中诱导TBI并研究了实际BTBI的组织病理学相似之处。在Craniotomy之后,大鼠脑暴露于各种激光流量的直径为3mm的leisw的单一射击。在leisw曝光后24小时,进行灌注固定,切割萃取的脑部;将该部分用苏木精 - 曙红染色。埃文斯蓝(EB)染色也用于评估血脑屏障的破坏。在某些激光流量水平下,在皮层和皮质区域中观察到神经细胞损伤和出血性病变。然而,损伤在与LISW相互作用的组织区域有限。随着激光量的增加,损伤的严重程度增加,因此LISW的峰值压力增加。源自EB的荧光在高流量水平的损伤中弥漫性观察。由于损伤的等级和空间可控性和类似于实际BTBI的组织学观察,Lisws引起的脑损伤将是学习BTBI的有用模型。

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