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Enhancement Of Sensitivity Gain And Frequency Tuning By Coupling Of Active Hair Bundles

机译:通过主动发束的耦合提高灵敏度增益和频率调谐

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摘要

The vertebrate inner ear possesses an active process that provides nonlinear amplification of mechanical stimuli. A candidate for this process is active hair bundle mechanics observed, for instance, for hair cells of the bullfrog's sacculus. Hair bundles in various inner ear organs are coupled by overlying membranes. Using a stochastic description of active hair bundle dynamics, we study the consequences of an elastic coupling on the properties of amplification. We report that collective effects in arrays of hair bundles can enhance the amplification gain and the sharpness of frequency tuning as compared with the performance of an isolated hair bundle. We also discuss the transient response elicited by the sudden onset of a periodic stimulus and its relation to temporal integration curves. Simulations of systems with a gradient of intrinsic frequencies show an enhanced amplification gain while preserving a frequency gradient, provided the coupling strength is similar to the hair bundle stiffness. We relate our findings to the situation in the bullfrog's sacculus and the mammalian cochlea.
机译:脊椎动物的内耳具有一个活跃的过程,该过程提供了机械刺激的非线性放大。此过程的候选者是活跃的发束力学,例如,观察到牛蛙囊的毛细胞。各种内耳器官中的发束通过覆膜相连。使用主动发束动力学的随机描述,我们研究了弹性耦合对扩增特性的影响。我们报告说,与孤立发束的性能相比,发束阵列中的集体效应可以增强放大增益和频率调谐的清晰度。我们还将讨论由周期性刺激的突然发作引起的瞬态响应及其与时间积分曲线的关系。具有固有频率梯度的系统的仿真显示出增强的放大增益,同时保留了频率梯度,前提是耦合强度类似于发束的刚度。我们将我们的发现与牛蛙囊和哺乳动物耳蜗的情况联系起来。

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