首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Acoustic trauma causes reversible stiffness changes in auditory sensory cells.
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Acoustic trauma causes reversible stiffness changes in auditory sensory cells.

机译:声学创伤会导致听觉感觉细胞的可逆硬度变化。

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摘要

A common cause of hearing impairment is exposure to loud noise. Recent research has demonstrated that the auditory mechanosensory cells are essential for normal hearing sensitivity and frequency selectivity. However, little is known about the effect of noise exposure on the mechanical properties of the auditory sensory cells. Here we report a significant reduction in the stiffness and cell length of the outer hair cells after impulse noise exposure, suggesting that mechanical changes at the cellular level are involved in noise-induced hearing loss. There is a recovery of the cellular stiffness and cell length over a two-week period, indicating an activation of cellular repair mechanisms for restoring the auditory function following noise trauma. The reduced stiffness observed at the cellular level is likely to be the cause for the downward shift of the characteristic frequency seen following acoustic trauma. The deterioration and the recovery of the mechanical properties of outer hair cells may form important underlying factors in all kinds of noise-induced hearing loss.
机译:听力障碍的常见原因是受到很大的噪音。最近的研究表明,听觉机械感觉细胞对于正常的听力敏感性和频率选择性至关重要。然而,关于噪声暴露对听觉感觉细胞机械特性的影响知之甚少。在这里,我们报告脉冲噪声暴露后,外毛细胞的硬度和细胞长度显着降低,这表明在细胞水平上的机械变化与噪声引起的听力损失有关。在两周的时间内,细胞的刚度和细胞长度有所恢复,表明激活了细胞修复机制,以恢复噪音引起的听觉功能。在细胞水平上观察到的降低的刚度很可能是导致声学损伤后特征频率下降的原因。外部毛细胞的机械性能的恶化和恢复可能在各种噪声引起的听力损失中形成重要的潜在因素。

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