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Cochlear Phase and Amplitude Retrieved from the Auditory Nerve at Arbitrary Frequencies

机译:从任意频率的听觉神经中提取耳蜗的相位和幅度

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摘要

It is currently impossible to mechanically measure the overall vibration pattern of the intact mammalian cochlea because of its inaccessibility and vulnerability. At first sight, data from the auditory nerve are a poor substitute because of their limited temporal resolution. The nonlinear character of neural coding, however, causes low-frequency interactions among the components of multitone stimuli. We designed a novel stimulus for which these interactions take a particularly systematic form, and we recorded the response of the auditory nerve to this stimulus. A careful analysis of interactions in the data allowed us to reconstruct frequency transfer functions (both their amplitude and their phase) at multiple points spanning the entire length of the cochlea. The generic character of our stimuli and analysis suggests its wider use in nonlinear system analysis, particularly in those instances in which limitations in temporal resolution restrict the use of customary methods.
机译:由于其难以接近和易受伤害,目前无法机械地测量完整哺乳动物耳蜗的总体振动模式。乍一看,由于时间分辨力有限,来自听觉神经的数据不能很好地替代。但是,神经编码的非线性特性会导致多音刺激成分之间的低频相互作用。我们设计了一种新颖的刺激,这些相互作用采取了特别系统的形式,并且我们记录了听觉神经对此刺激的反应。对数据中相互作用的仔细分析使我们能够在跨越耳蜗整个长度的多个点上重建频率传递函数(幅度和相位)。我们的刺激和分析的一般特征表明,它在非线性系统分析中得到了更广泛的应用,特别是在时间分辨率受到限制而无法使用常规方法的情况下。

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