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非哺乳动物的耳声发射

Otoacoustic Emissions in Non-Mammals.

作者信息

Manley Geoffrey A

机构信息

Department of Neuroscience, Faculty of Medicine, University of Oldenburg, 26129 Oldenburg, Germany.

出版信息

Audiol Res. 2022 May 11;12(3):260-272. doi: 10.3390/audiolres12030027.

Abstract

Otoacoustic emissions (OAE) that were sound-induced, current-induced, or spontaneous have been measured in non-mammalian land vertebrates, including in amphibians, reptiles, and birds. There are no forms of emissions known from mammals that have not also been observed in non-mammals. In each group and species, the emission frequencies clearly lie in the range known to be processed by the hair cells of the respective hearing organs. With some notable exceptions, the patterns underlying the measured spectra, input-output functions, suppression threshold curves, etc., show strong similarities to OAE measured in mammals. These profound similarities are presumably traceable to the fact that emissions are produced by active hair-cell mechanisms that are themselves dependent upon comparable nonlinear cellular processes. The differences observed-for example, in the width of spontaneous emission peaks and delay times in interactions between peaks-should provide insights into how hair-cell activity is coupled within the organ and thus partially routed out into the middle ear.

摘要

在非哺乳动物陆地脊椎动物中,包括两栖动物、爬行动物和鸟类,已经测量了由声音诱发、电流诱发或自发产生的耳声发射(OAE)。在非哺乳动物中也观察到了在哺乳动物中已知的各种发射形式。在每个类群和物种中,发射频率显然都在已知由相应听觉器官的毛细胞处理的范围内。除了一些明显的例外,测量光谱、输入-输出函数、抑制阈值曲线等背后的模式与在哺乳动物中测量的耳声发射有很强的相似性。这些深刻的相似性大概可以追溯到这样一个事实,即发射是由活跃的毛细胞机制产生的,而这些机制本身依赖于类似的非线性细胞过程。观察到的差异——例如,自发发射峰的宽度和峰间相互作用的延迟时间——应该有助于深入了解毛细胞活动在器官内是如何耦合的,从而部分地传入中耳。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d033/9149831/01d710754021/audiolres-12-00027-g001.jpg

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