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Biological effect of shock waves on rat brain: Pathological evaluation by compact Ho: YAG laser-induced cavitational shock wave generator

机译:冲击波对大鼠脑的生物学效应:Compact HO的病理评估:YAG激光诱导的空化冲击波发生器

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To introduce shock wave as a new treatment modality for the lesions in the vicinity of brain and skull, pressure-dependent brain damages after exposure of shock wave were investigated. A novel compact Ho: YAG laser-induced cavitational shock wave generator (diameter: 15 mm, weight: 20g) was used instead of clinical lithotriptors due to their wide distribution of shock waves. In the first part, we have developed and investigated characteristics of present generator by means of high-speed photography, shadowgraphy, and pressure measurement. Generation of localized shock wave without harmful effect of laser was observed after irradiation of Ho: YAG laser in the brass tube with internal water supply. Mechanical effect of accompanying laser-induced liquid jet was mitigated after placement of latex diaphragm with acrylic water reservoir. Maximum overpressure of generated shock wave was 15 MPa before placement of diaphragm, and 5 MPa after placement of diaphragm. In the second part, shock wave-induced brain damages were investigated in 5 male Sprague-Dawley rats. While subarachnoid hemorrhage could be observed between 1 and 5 MPa, intracerebral hemorrhage, and laceration of tissue were also observed above 5 MPa. We therefore conclude that overpressure of exposing shock wave over brain surface should be managed under 1 MPa.
机译:为了将冲击波引入脑和颅骨附近的病变作为新的治疗方式,研究了冲击波暴露后的压力依赖性脑损伤。一种新型紧凑型HO:YAG激光诱导的空化冲击波发生器(直径:15mm,重量:20g)代替临床型碎石术,因为它们的冲击波的广泛分布。在第一部分中,我们通过高速摄影,影像和压力测量开发和调查了现有发电机的特性。在带有内部供水的黄铜管中照射后观察到没有激光有害影响的局部冲击波的产生。用丙烯酸水库放置乳胶隔膜后,减轻了随附激光诱导的液体射流的机械效果。在放置隔膜之前,产生的冲击波的最大超压度为15MPa,在膜片放置后5MPa。在第二部分中,在5只雄性Sprague-Dawley大鼠中研究了冲击波诱导的脑损伤。在1至5MPa之间,在1至5MPa之间观察到蛛网膜下腔出血,同时观察到脑内出血和组织的撕裂。因此,我们应该在1 MPa下管理脑表面上暴露冲击波的过度压力。

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