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Pathophysiology of the inner ear after blast injury caused by laser-induced shock wave

机译:激光诱发的冲击波引起爆炸损伤后内耳的病理生理学

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摘要

The ear is the organ that is most sensitive to blast overpressure, and ear damage is most frequently seen after blast exposure. Blast overpressure to the ear results in sensorineural hearing loss, which is untreatable and is often associated with a decline in the quality of life. In this study, we used a rat model to demonstrate the pathophysiological and structural changes in the inner ear that replicate pure sensorineural hearing loss associated with blast injury using laser-induced shock wave (LISW) without any conductive hearing loss. Our results indicate that threshold elevation of the auditory brainstem response (ABR) after blast exposure was primarily caused by outer hair cell dysfunction induced by stereociliary bundle disruption. The bundle disruption pattern was unique; disturbed stereocilia were mostly observed in the outermost row, whereas those in the inner and middle rows stereocilia remained intact. In addition, the ABR examination showed a reduction in wave I amplitude without elevation of the threshold in the lower energy exposure group. This phenomenon was caused by loss of the synaptic ribbon. This type of hearing dysfunction has recently been described as hidden hearing loss caused by cochlear neuropathy, which is associated with tinnitus or hyperacusis.
机译:耳朵是对爆炸超压最敏感的器官,并且在爆炸接触后最常见耳朵损伤。爆破对耳朵的超压会导致感觉神经性听力损失,这是无法挽回的,通常与生活质量下降有关。在这项研究中,我们使用大鼠模型来证明内耳的病理生理和结构变化,这些变化使用激光诱导的冲击波(LISW)复制与爆炸伤害相关的纯感觉神经性听力损失,而没有任何传导性听力损失。我们的结果表明,爆炸暴露后听觉脑干反应(ABR)的阈值升高主要是由立体纤毛束破坏引起的外毛细胞功能障碍引起的。束破裂的模式是独特的。在最外侧的一排中,大多数观察到了不规则的纤毛,而在内侧和中间的一排中,纤毛保持完整。另外,ABR检查显示在较低能量暴露组中,I波振幅降低而阈值未升高。这种现象是由突触带的丢失引起的。最近已经将这种类型的听力障碍描述为由耳蜗神经病引起的隐性听力损失,其与耳鸣或听觉亢进有关。

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