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Short-term pathophysiologic changes and histopathologic findings of the auditory pathway after closed head injury, using a rabbit model.

机译:使用兔子模型,闭合性颅脑损伤后听觉通路的短期病理生理变化和组织病理学发现。

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Hearing impairment is a well-known consequence of closed head injury (CHI). The aim of this study was to elucidate the pathogenesis of CHI-induced hearing loss, using a rabbit model. Twelve New Zealand white rabbits were divided into two groups of 6. In the first group, CHI was induced mechanically, whereas the rabbits of the second group served as controls. Baseline distortion product otoacoustic emissions (DPOAEs), contralateral suppression (CS) of the DPOAEs and auditory brainstem response (ABR) were obtained. The same measurements were performed in the first group after CHI. Three hours later, the animals were sacrificed and their brain was excised and subjected to histopathologic examination. Mean I-III ABR latencies were increased and DPOAE amplitudes and CS values were reduced in the trauma group after CHI, at a statistically significant level. Histopathologic examination of the temporal lobe and brainstem showed multiple hemorrhagic and necrotic areas, with edema in the surrounding region. The vestibulocochlear nerve was severely damaged at its emerging site at the brainstem. In conclusion, both peripheral and central involvement of the auditory pathway was found after CHI. Otoacoustic emissions in conjunction with ABR may provide significant information on both peripheral and central auditory function.
机译:听力障碍是闭合性颅脑损伤(CHI)的众所周知的后果。这项研究的目的是使用兔模型阐明CHI引起的听力损失的发病机理。将十二只新西兰白兔分成两组,每组6只。在第一组中,机械地诱导CHI,而在第二组中的兔子作为对照。获得基线畸变产物耳声发射(DPOAE),DPOAE的对侧抑制(CS)和听性脑干反应(ABR)。 CHI后的第一组进行相同的测量。 3小时后,处死动物并切除其大脑并进行组织病理学检查。 CHI后的创伤组平均I-III ABR潜伏期增加,DPOAE振幅和CS值降低,具有统计学上的显着水平。颞叶和脑干的组织病理学检查显示多个出血和坏死区域,周围区域有水肿。前庭耳蜗神经在脑干的新兴部位受到严重损伤。总之,CHI后发现了听觉途径的周围和中央参与。耳声与ABR结合可以提供有关外周和中枢听觉功能的重要信息。

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