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蜥蜴自发性耳声发射特征的建模。

Modeling the characteristics of spontaneous otoacoustic emissions in lizards.

机构信息

University of Groningen, University Medical Center Groningen, Department of Otorhinolaryngology/Head and Neck Surgery, Groningen, the Netherlands; University of Groningen, Graduate School of Medical Sciences (Research School of Behavioral and Cognitive Neurosciences), Groningen, the Netherlands.

Cochlear and Auditory Brainstem Physiology, Department of Neuroscience, School of Medicine and Health Sciences, Cluster of Excellence "Hearing4all", Research Center Neuroscience, Carl von Ossietzky University Oldenburg, 26129, Oldenburg, Germany.

出版信息

Hear Res. 2020 Jan;385:107840. doi: 10.1016/j.heares.2019.107840. Epub 2019 Nov 15.

Abstract

Lizard auditory papillae have proven to be an attractive object for modelling the production of spontaneous otoacoustic emissions (SOAE). Here we use an established model (Vilfan and Duke, 2008) and extend it by exploring the effect of varying the number of oscillating elements, the strength of the parameters that describe the coupling between oscillators, the strength of the oscillators, and additive noise. The most remarkable result is that the actual number of oscillating elements hardly influences the spectral pattern, explaining why spectra from very different papillar dimensions are similar. Furthermore, the spacing between spectral peaks primarily depends on the reactive coupling between the oscillator elements. This is consistent with observed differences between lizard species with respect to tectorial covering of hair cells and SOAE peak spacings. Thus, the model provides a basic understanding of the variation in SOAE properties across lizard species.

摘要

蜥蜴的听觉乳头已被证明是模拟自发性耳声发射(SOAE)产生的一个有吸引力的对象。在这里,我们使用一个已建立的模型(Vilfan 和 Duke,2008),并通过探索改变振荡元件数量、描述振荡器之间耦合的参数强度、振荡器强度和外加噪声的效果来扩展它。最显著的结果是,实际的振荡元件数量几乎不会影响光谱模式,这解释了为什么来自非常不同的乳头尺寸的光谱相似。此外,光谱峰之间的间隔主要取决于振荡器元件之间的反应耦合。这与观察到的蜥蜴物种之间在毛细胞的盖层和 SOAE 峰间隔方面的差异一致。因此,该模型为理解不同蜥蜴物种之间 SOAE 特性的变化提供了一个基本的认识。

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