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Explosive synchronization enhances selectivity: Example of the cochlea

机译:爆炸性同步增强了选择性:耳蜗的示例

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Acoustical signal transduction in the cochlea is an active process that involves nonlinear amplification and spontaneous otoacoustic emissions. Signal transduction involves individual subunits composed of globally coupled hair cells, which can be modeled as oscillators close to a Hopf bifurcation. The coupling may induce a transition toward synchronization, which in turn leads to a strong nonlinear response. In the model studied here, the synchronization transition of the subunit is discontinuous (explosive) in the absence of an external stimulus. We show that, in the presence of an external stimulus and for a coupling strength slightly lower than the critical value leading to explosive synchronization, the response of the subunit has better frequency selectivity and a larger signal-to-noise ratio. From physiological observations that subunits are themselves coupled together, we further propose a model of the complete cochlea, accounting for the ensemble of frequencies that the organ is able to detect.
机译:耳蜗中的声信号转导是一个活跃的过程,涉及非线性放大和自发性耳声发射。信号转导涉及由整体耦合的毛细胞组成的单个亚基,可以将其建模为接近Hopf分叉的振荡器。耦合可能会引起向同步的过渡,进而导致强烈的非线性响应。在这里研究的模型中,在没有外部刺激的情况下,亚基的同步转变是不连续的(爆炸性的)。我们表明,在存在外部刺激且耦合强度略低于导致爆炸性同步的临界值的情况下,该子单元的响应具有更好的频率选择性和更大的信噪比。从亚单位本身耦合在一起的生理观察,我们进一步提出了完整的耳蜗模型,考虑了器官能够检测到的频率集合。

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