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跨物种实验揭示正常听力中广泛的耳蜗神经损伤。

Cross-species experiments reveal widespread cochlear neural damage in normal hearing.

机构信息

Department of Speech, Language, and Hearing Sciences, Purdue University, West Lafayette, IN, USA.

Weldon School of Biomedical Engineering, Purdue University, West Lafayette, IN, USA.

出版信息

Commun Biol. 2022 Jul 22;5(1):733. doi: 10.1038/s42003-022-03691-4.

Abstract

Animal models suggest that cochlear afferent nerve endings may be more vulnerable than sensory hair cells to damage from acoustic overexposure and aging. Because neural degeneration without hair-cell loss cannot be detected in standard clinical audiometry, whether such damage occurs in humans is hotly debated. Here, we address this debate through co-ordinated experiments in at-risk humans and a wild-type chinchilla model. Cochlear neuropathy leads to large and sustained reductions of the wideband middle-ear muscle reflex in chinchillas. Analogously, human wideband reflex measures revealed distinct damage patterns in middle age, and in young individuals with histories of high acoustic exposure. Analysis of an independent large public dataset and additional measurements using clinical equipment corroborated the patterns revealed by our targeted cross-species experiments. Taken together, our results suggest that cochlear neural damage is widespread even in populations with clinically normal hearing.

摘要

动物模型表明,与毛细胞相比,耳蜗传入神经末梢可能更容易受到声过度暴露和衰老的损害。由于标准临床听力测试无法检测到无毛细胞损失的神经退行性变,这种损害是否发生在人类中存在激烈的争论。在这里,我们通过对高危人群和野生型南美栗鼠模型的协调实验来解决这一争论。耳蜗神经病变导致南美栗鼠的宽带中耳肌反射出现大幅持续减少。类似地,人类宽带反射测量结果在中年和有高噪声暴露史的年轻人中显示出明显的损伤模式。对一个独立的大型公共数据集的分析和使用临床设备进行的其他测量结果证实了我们跨物种靶向实验所揭示的模式。总之,我们的研究结果表明,即使在临床听力正常的人群中,耳蜗神经损伤也很普遍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc05/9307777/9c9b75e6069a/42003_2022_3691_Fig1_HTML.jpg

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