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噪声创伤诱导蒙古沙鼠听觉系统的神经可塑性:耳鸣发展和非发展动物之间的差异。

Noise Trauma Induced Neural Plasticity Throughout the Auditory System of Mongolian Gerbils: Differences between Tinnitus Developing and Non-Developing Animals.

机构信息

Experimental Otolaryngology, Friedrich-Alexander University Erlangen-Nürnberg , Erlangen , Germany.

Leibniz Institute for Neurobiology , Magdeburg , Germany.

出版信息

Front Neurol. 2015 Feb 10;6:22. doi: 10.3389/fneur.2015.00022. eCollection 2015.

Abstract

In this study, we describe differences between neural plasticity in auditory cortex (AC) of animals that developed subjective tinnitus (group T) after noise-induced hearing loss (NIHL) compared to those that did not [group non-tinnitus (NT)]. To this end, our analysis focuses on the input activity of cortical neurons based on the temporal and spectral analysis of local field potential (LFP) recordings and an in-depth analysis of auditory brainstem responses (ABR) in the same animals. In response to NIHL in NT animals we find a significant general reduction in overall cortical activity and spectral power as well as changes in all ABR wave amplitudes as a function of loudness. In contrast, T-animals show no significant change in overall cortical activity as assessed by root mean square analysis of LFP amplitudes, but a specific increase in LFP spectral power and in the amplitude of ABR wave V reflecting activity in the inferior colliculus (IC). Based on these results, we put forward a refined model of tinnitus prevention after NIHL that acts via a top-down global (i.e., frequency-unspecific) inhibition reducing overall neuronal activity in AC and IC, thereby counteracting NIHL-induced bottom-up frequency-specific neuroplasticity suggested in current models of tinnitus development.

摘要

在这项研究中,我们描述了噪声诱导听力损失(NIHL)后出现主观耳鸣(T 组)的动物与未出现耳鸣的动物(非耳鸣组,NT)之间听觉皮层(AC)神经可塑性的差异。为此,我们的分析重点是基于局部场电位(LFP)记录的时频分析和相同动物听觉脑干反应(ABR)的深入分析,研究皮质神经元的输入活动。在 NT 动物的 NIHL 反应中,我们发现整体皮质活动和频谱功率明显降低,以及所有 ABR 波幅度随响度的变化。相比之下,T 动物的 LFP 幅度均方根分析评估的整体皮质活动没有明显变化,但 LFP 频谱功率和反映下丘(IC)活动的 ABR 波 V 的幅度特异性增加。基于这些结果,我们提出了一种改进的 NIHL 后耳鸣预防模型,该模型通过自上而下的全局(即频率非特异性)抑制作用,降低 AC 和 IC 中的整体神经元活动,从而抵消当前耳鸣发展模型中建议的 NIHL 诱导的频率特异性神经可塑性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b204/4322711/b8cbf6c301ac/fneur-06-00022-g001.jpg

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