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How low must you go? Effects of low-level noise on cochlear neural response

机译:你必须低多少? 低级噪声对耳蜗神经应答的影响

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Prolonged exposure to low-level noise has often been used scientifically as well as clinically to induce neuroplastic changes within the central auditory pathway in order to reduce central gain, suppress tinnitus and hyperacusis, and modulate different features of central auditory processing. A fundamental assumption underling these studies is that the noise exposure levels are so low that they have no effect on the neural output of the cochlea. Therefore, functional changes occurring in the central auditory pathway must be the results of central rather than peripheral changes. In an attempt to identify long-term noise exposures that did not cause peripheral changes, we measured the compound action potential (CAP) input/output functions from control rats and rats exposed for 6-weeks to 18-24 kHz noise presented at 25, 45, 55, 65, 75 or 85 dB SPL. Exposures >65 dB SPL significantly increased CAP thresholds; the critical intensity (Ct) below which no threshold shift occurred was estimated to be 55 dB SPL. Exposures >55 dB SPL significantly reduced suprathreshold CAP amplitudes; the critical intensity (Ca) below which no amplitude change was predicted to occur was a remarkably low level of 19 dB SPL. These results demonstrate that even extremely low-intensity long duration exposures can disrupt the neural output of the cochlea; these peripheral modifications are likely to contribute to the extensive compensatory changes observed at multiple levels of the central auditory pathway, neural network changes aimed at re-establishing homeostasis. (C) 2020 Elsevier B.V. All rights reserved.
机译:长期暴露于低水平噪声通常是科学的,并且临床上使用中央听觉途径内的神经塑性变化,以减少中央增益,抑制耳鸣和高血清,并调节中央听觉处理的不同特征。这些研究的基本假设是噪声暴露水平使得它们对耳蜗的神经输出没有影响。因此,中央听觉途径中发生的功能变化必须是中央而不是外围变化的结果。为了试图识别没有引起外周变化的长期噪声暴露,我们测量了从对照大鼠和暴露6周暴露的大鼠的复合动作电位(帽)输入/输出函数为25次出现的噪声, 45,55,65,75或85 dB SPL。暴露> 65 dB拼接显着增加盖阈值;下面没有发生阈值移位的临界强度(CT)估计为55dB SPL。暴露> 55dB拼接显着减少了Suprathreshold帽振幅;下面的临界强度(CA)预计不会发生幅度变化是一个显着的低水平的19dB SPL。这些结果表明,即使极低强度的长度持续时间曝光也可能破坏耳蜗的神经输出;这些外周修改可能有助于在中央听觉途径的多个水平观察到的广泛补偿变化,目的地改变旨在重新建立稳态。 (c)2020 Elsevier B.V.保留所有权利。

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