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Functional relevance of acoustic tracheal design in directional hearing in crickets

机译:acoustic气管设计在定向听觉中的功能相关性

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摘要

Internally coupled ears (ICEs) allow small animals to reliably determine the direction of a sound source. ICEs are found in a variety of taxa, but crickets have evolved the most complex arrangement of coupled ears: an acoustic tracheal system composed of a large cross-body trachea that connects two entry points for sound in the thorax with the leg trachea of both ears. The key structure that allows for the tuned directionality of the ear is a tracheal inflation (acoustic vesicle) in the midline of the cross-body trachea holding a thin membrane (septum). Crickets are known to display a wide variety of acoustic tracheal morphologies, most importantly with respect to the presence of a single or double acoustic vesicle. However, the functional relevance of this variation is still not known. In this study, we investigated the peripheral directionality of three co-occurring, closely related cricket species of the subfamily Gryllinae. No support could be found for the hypothesis that a double vesicle should be regarded as an evolutionary innovation to (1) increase interaural directional cues, (2) increase the selectivity of the directional filter or (3) provide a better match between directional and sensitivity tuning. Nonetheless, by manipulating the double acoustic vesicle in the rainforest cricket Paroecanthus podagrosus, selectively eliminating the sound-transmitting pathways, we revealed that these pathways contribute almost equally to the total amount of interaural intensity differences, emphasizing their functional relevance in the system.
机译:内部耦合的耳朵(ICE)使小型动物能够可靠地确定声源的方向。 ICE在各种各样的分类单元中都可以找到,但是已经进化出最复杂的耦合耳朵排列方式:一种由大的斜体气管组成的声气管系统,该系统将两个进入点连接到胸部的声音与两只耳朵的腿部气管之间。 。允许调整耳朵方向的关键结构是气管膨胀(声囊泡),该气管保持着薄膜(隔膜)在气管的中线。 are显示出各种各样的声气管形态,最重要的是关于单个或两个声囊的存在。但是,这种变化的功能相关性仍然未知。在这项研究中,我们调查了Gryllinae亚科的三种同时发生,密切相关的物种的外围方向性。没有证据支持将双囊泡视为进化创新,以(1)增加耳间方向提示,(2)增加方向滤波器的选择性,或(3)提供方向和灵敏度之间的更好匹配的假设调整。尽管如此,通过操纵热带雨林Paroecanthus podagrosus中的双声囊泡,有选择地消除了声音传播途径,我们发现这些途径几乎对耳​​间强度差异的总量贡献相同,强调了它们在系统中的功能相关性。

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