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首页> 外文期刊>The Journal of the Acoustical Society of America >A hydromechanical biomimetic cochlea: Experiments and models
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A hydromechanical biomimetic cochlea: Experiments and models

机译:流体力学仿生耳蜗:实验和模型。

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The construction, measurement, and modeling of an artificial cochlea (ACochlea) are presented in this paper. An artificial basilar membrane (ABM) was made by depositing discrete Cu beams on a piezomembrane substrate. Rather than two fluid channels, as in the mammalian cochlea, a single fluid channel was implemented on one side of the ABM, facilitating the use of a laser to detect the ABM vibration on the other side. Measurements were performed on both the ABM and the ACochlea. The measurement results on the ABM show that the longitudinal coupling on the ABM is very strong. Reduced longitudinal coupling was achieved by cutting the membrane between adjacent beams using a laser. The measured results from the ACochlea with a laser-cut ABM demonstrate cochlear-like features, including traveling waves, sharp high-frequency rolloffs, and place-specific frequency selectivity. Companion computational models of the mechanical devices were formulated and implemented using a circuit simulator. Experimental data were compared with simulation results. The simulation results from the computational models of the ABM and the ACochlea are similar to their experimental counterparts. (c) 2006 Acoustical Society of America.
机译:本文介绍了人工耳蜗(ACochlea)的构建,测量和建模。人造基底膜(ABM)是通过在压电膜基板上沉积离散的Cu束而制成的。与在哺乳动物的耳蜗中不同,没有使用两个流体通道,而是在ABM的一侧设置了单个流体通道,从而便于使用激光来检测另一侧的ABM振动。对ABM和ACochlea均进行了测量。在ABM上的测量结果表明,在ABM上的纵向耦合非常牢固。通过使用激光切割相邻光束之间的薄膜,可以减少纵向耦合。用激光切割的ABM从ACochlea测得的结果显示出类似耳蜗的功能,包括行波,尖锐的高频衰减和特定地点的频率选择性。机械设备的配套计算模型是使用电路模拟器制定和实现的。实验数据与仿真结果进行了比较。 ABM和ACochlea的计算模型的仿真结果与它们的实验相似。 (c)2006年美国声学学会。

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