Neuroacoustics, Institute of Physics, Carl von Ossietzky Universität Oldenburg, Carl-von-Ossietzky-Str. 9-11, Oldenburg 26111, Germany.
J Acoust Soc Am. 2010 Oct;128(4):1870-83. doi: 10.1121/1.3479755.
A model of the cochlea was used to bridge the gap between model approaches commonly used to investigate phenomena related to otoacoustic emissions and more filter-based model approaches often used in psychoacoustics. In the present study, a nonlinear and active one-dimensional transmission line model was developed that accounts for several aspects of physiological data with a single fixed parameter set. The model shows plausible excitation patterns and an input-output function similar to the linear-compressive-linear function as hypothesized in psychoacoustics. The model shows realistic results in a two-tone suppression paradigm and a plausible growth function of the 2f(1)-f(2) component of distortion product otoacoustic emissions. Finestructure was found in simulated stimulus-frequency otoacoustic emissions (SFOAE) with realistic levels and rapid phase rotation. A plausible "threshold in quiet" including finestructure and spontaneous otoacoustic emissions (SOAE) could be simulated. It is further shown that psychoacoustical data of modulation detection near threshold can be explained by the mechanical dynamics of the modeled healthy cochlea. It is discussed that such a model can be used to investigate the representation of acoustic signals in healthy and impaired cochleae at this early stage of the auditory pathway for both, physiological as well as psychoacoustical paradigms.
采用耳蜗模型来弥合通常用于研究与耳声发射相关现象的模型方法与常用于心理声学的基于滤波器的模型方法之间的差距。在本研究中,开发了一种非线性和主动的一维传输线模型,该模型用单个固定参数集来描述几个生理数据方面。该模型显示出与心理声学中假设的线性压缩线性函数类似的合理激励模式和输入-输出函数。该模型在双音抑制范式和失真产物耳声发射的 2f(1)-f(2)分量的合理生长函数中显示出了现实的结果。在具有现实水平和快速相位旋转的模拟刺激频率耳声发射(SFOAE)中发现了精细结构。可以模拟出包括精细结构和自发性耳声发射(SOAE)的合理“安静阈值”。进一步表明,可通过建模健康耳蜗的力学动态来解释调制检测阈值附近的心理声学数据。讨论了在听觉通路的这个早期阶段,这种模型可用于研究健康和受损耳蜗中声信号的表示,无论是生理还是心理声学范式都适用。