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ON TIME-DELAYED AND FEED-FORWARD TRANSMISSION LINE MODELS OF THE COCHLEA

机译:耳蜗的时滞和前馈传输线模型

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摘要

The mammalian cochlea is a remarkable organ that is able to provide up to 60dB amplification of low amplitude sound with sharp tuning. It has been proposed that in order qualitatively to explain experimental data, models of the basilar membrane impedance must include an exponential term that represents a time-delayed feedback. There are also models that include, e.g., a spatial feed-forward mechanism, whose solution is often approximated by replacing the feed-forward term by an exponential term that yields similar qualitatively accurate results. This suggests a mathematical equivalence between time delay and the spatial feed-forward models. Using a WKB approximation to compare numerical steady-state solutions, we show that there is no such simple equivalence. An investigation of the steady-state outputs shows that both models can display sharp tuning, but that the time-delay model requires negative damping for such an effect to occur. Conversely, the feed-forward model provides the most promising results with small positive damping. These results are extended by a careful stability analysis of both models. Here it is shown that whereas a small time delay can stabilize an unstable transmission-line model (with negative damping), that the feed-forward model is stable when the damping is positive. The techniques developed in the paper are directed towards a more comprehensive analysis of nonlinear models.
机译:哺乳动物的耳蜗是一个非凡的器官,能够通过急剧的调音提供低振幅声音高达60dB的放大。已经提出,为了定性地解释实验数据,基底膜阻抗模型必须包括代表时间延迟反馈的指数项。还存在包括例如空间前馈机制的模型,其解决方案通常通过用产生相似的定性精确结果的指数项来代替前馈项来近似。这暗示了时间延迟和空间前馈模型之间的数学等价性。使用WKB近似来比较数值稳态解,我们证明没有这种简单的等价关系。对稳态输出的研究表明,两个模型都可以显示出急剧的调谐,但是时延模型需要负阻尼才能产生这种效果。相反,前馈模型以较小的正阻尼提供了最有希望的结果。通过对两个模型进行仔细的稳定性分析,可以扩展这些结果。此处显示,尽管较小的时间延迟可以稳定不稳定的传输线模型(具有负阻尼),但当阻尼为正时,前馈模型是稳定的。本文开发的技术旨在对非线性模型进行更全面的分析。

著录项

  • 来源
    《Journal of mechanics of materials and structures》 |2011年第4期|p.557-568|共12页
  • 作者单位

    Department of Engineering Mathematics, University of Bristol, Queen's Building, University Walk, Bristol, BS81TR, United Kingdom;

    Institute of Physics, Neuroacoustics, Carl von Ossietzky Universitat Oldenburg, Carl-von-Ossietzky-Str. 9-11, 26111 Oldenburg, Germany;

    Department of Engineering Mathematics, University of Bristol, Queen's Building, University Walk, Bristol, BS81TR, United Kingdom;

    Department of Engineering Mathematics, University of Bristol, Queen's Building, University Walk, Bristol, BS81TR, United Kingdom;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    hearing; cochlea model; stability; delay;

    机译:听力;耳蜗模型稳定性;延迟;

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