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From Hearing to Listening: Design and Properties of an Actively Tunable Electronic Hearing Sensor

机译:从听觉到听力:主动可调电子听力传感器的设计和性能

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摘要

An important step towards understanding the working principles of the mammalian hearing sensor is the concept of an active cochlear amplifier. Theoretical arguments and physiological measurements suggest that the active cochlear amplifiers originate from systems close to a Hopf bifurcation. Efforts to model the mammalian hearing sensor on these grounds have, however, either had problems in reproducing sufficiently close essential aspects of the biological example (Magnasco, M.O. Phys. Rev. Lett. >90, 058101 (2003); Duke, T. & Jülicher, F. Phys. Rev. Lett. >90, 158101 (2003)), or required complicated spatially coupled differential equation systems that are unfeasible for transient signals (Kern, A. & Stoop, R. Phys. Rev. Lett. >91, 128101 (2003)). Here, we demonstrate a simple system of electronically coupled Hopf amplifiers that not only leads to the desired biological response behavior, but also has real-time capacity. The obtained electronic Hopf cochlea shares all salient signal processing features exhibited by the mammalian cochlea and thus provides a simple and efficient design of an artificial mammalian hearing sensor.
机译:理解哺乳动物听力传感器工作原理的重要一步是有源耳蜗放大器的概念。理论论据和生理学测量表明,有源耳蜗放大器源自靠近霍普夫分支的系统。然而,基于这些理由对哺乳动物听力传感器进行建模的努力都存在重现生物学实例足够接近的基本方面的问题(Magnasco,MO Phys。Rev. Lett。> 90 ,058101(2003))。 ; Duke,T.&Jülicher,F. Phys。Rev. Lett。> 90 ,158101(2003)),或需要复杂的空间耦合微分方程系统,这些系统对于瞬态信号不可行(Kern,A. &Stoop,R. Phys。Rev. Lett。> 91 ,128101(2003))。在这里,我们演示了一个简单的电子耦合Hopf放大器系统,该系统不仅导致所需的生物学反应行为,而且具有实时能力。所获得的电子霍夫耳蜗共有哺乳动物耳蜗展现的所有显着信号处理特征,因此提供了一种人工哺乳动物听力传感器的简单有效的设计。

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