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首页> 外文期刊>International Journal of Clinical and Experimental Pathology >Relationship between changes in the cochlear blood flow and disorder of hearing function induced by blast injury in guinea pigs
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Relationship between changes in the cochlear blood flow and disorder of hearing function induced by blast injury in guinea pigs

机译:豚鼠爆炸损伤引起的耳蜗血流变化与听力功能障碍的关系

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摘要

The auditory system is the most susceptible to damages from blast waves. Blast injuries always lead to varying degrees of hearing impairment. Although a disorder of the cochlear blood flow (CoBF) has been considered to be related to many pathological processes of the auditory system and to contribute to various types of hearing loss, changes in the CoBF induced by blast waves and the relationship between such changes and hearing impairment are undefined. To observe the changes in the cochlear microcirculation after exposure to an explosion blast, investigate the relationship between changes in the CoBF and hearing impairment and subsequently explore the mechanism responsible for the changes in the CoBF, we detected the perfusion of the cochlear microcirculation and hearing threshold shift after exposure to an explosion blast. Then, an N-nitro-L-arginine-methyl ester (L-NAME, NO synthase inhibitor) solution and artificial perilymph were applied to the round window (RW) of the cochlea before the blast exposure, followed by an evaluation of the CoBF and hearing function. The results indicated that the changes in the CoBF were correlated to the strength of the blast wave. The cochlear blood flow significantly increased when the peak value of the blast overpressure was greater than approximately 45 kPa, and there was no significant change in the cochlear blood flow when the peak value of the blast overpressure was less than approximately 35 kPa. Following local administration of the NO synthase inhibitor L-NAME, the increase in the CoBF induced by the blast was inhibited, and this reduction was significantly associated with the hearing threshold.
机译:听觉系统最容易受到爆炸波的破坏。爆炸伤害总是会导致不同程度的听力障碍。尽管人们认为耳蜗血流紊乱(CoBF)与听觉系统的许多病理过程有关,并导致各种类型的听力损失,但爆炸波引起的CoBF的变化以及这种变化与听力障碍尚不确定。为了观察爆炸后耳蜗微循环的变化,研究CoBF的变化与听力障碍之间的关系,并随后探究引起CoBF变化的机制,我们检测到了耳蜗微循环的灌注和听力阈值暴露在爆炸中后移动。然后,将N-硝基-L-精氨酸甲酯(L-NAME,NO合酶抑制剂)溶液和人工淋巴液在爆炸前暴露于耳蜗的圆窗(RW)上,然后评估CoBF和听觉功能。结果表明,CoBF的变化与爆炸波的强度有关。当冲击波超压的峰值大于约45kPa时,耳蜗血流量显着增加,而冲击波超压的峰值小于约35kPa时,耳蜗血流量没有显着变化。在局部施用NO合酶抑制剂L-NAME后,抑制了由爆炸诱导的CoBF的升高,并且这种降低与听力阈值显着相关。

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