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Angular Oscillation of Solid Scatterers in Response to Progressive Planar Acoustic Waves: Do Fish Otoliths Rock?

机译:待办事项鱼耳石岩:响应固体散射体渐进平面声波的角度摆动?

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摘要

Fish can sense a wide variety of sounds by means of the otolith organs of the inner ear. Among the incompletely understood components of this process are the patterns of movement of the otoliths vis-à-vis fish head or whole-body movement. How complex are the motions? How does the otolith organ respond to sounds from different directions and frequencies? In the present work we examine the responses of a dense rigid scatterer (representing the otolith) suspended in an acoustic fluid to low-frequency planar progressive acoustic waves. A simple mechanical model, which predicts both translational and angular oscillation, is formulated. The responses of simple shapes (sphere and hemisphere) are analyzed with an acoustic finite element model. The hemispherical scatterer is found to oscillate both in the direction of the propagation of the progressive waves and also in the plane of the wavefront as a result of angular motion. The models predict that this characteristic will be shared by other irregularly-shaped scatterers, including fish otoliths, which could provide the fish hearing mechanisms with an additional component of oscillation and therefore one more source of acoustical cues.
机译:鱼可以通过内耳的耳石器官感觉到各种各样的声音。在该过程的未完全理解的组成部分中,是耳石相对于鱼头或全身运动的运动方式。议案有多复杂?耳石器官如何响应来自不同方向和频率的声音?在本工作中,我们研究了悬浮在声流体中的稠密刚性散射体(代表耳石)对低频平面渐进声波的响应。建立了一个简单的机械模型,该模型可预测平移和角度振荡。简单的形状(球形和半球形)的响应通过声学有限元模型进行分析。由于角运动,发现半球形散射体不仅在渐进波的传播方向上而且还在波前平面中振荡。这些模型预测,此特性将由其他不规则形状的散射体(包括鱼耳石)共享,这可能会为鱼的听力机制提供额外的振荡成分,从而为声音提示提供更多的来源。

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