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Morphology of the odontocete melon and its implications for acoustic function

机译:牙突瓜的形态及其对声学功能的影响

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摘要

Toothed whales (crown Odontoceti) are unique among mammals in their ability to echolocate underwater, using specialized tissue structures. The melon, a structure composed of fat and connective tissue, is an important component in the production of an echolocation beam; it is known to focus high frequency, short duration echolocation clicks. Here, we report on the morphology of the odontocete melon to provide a comprehensive understanding of melon structure across odontocete taxa. This study examined nine odontocete species (12 individual specimens), from ?ve of the ten extant odontocete families. We established standardized de?nitions using computed tomography scans of the melon to investigate structure without losing geometric integrity. The morphological features that relate to the focusing capacity of the melon include internal density topography, melon size and shape, and relationship to other forehead structures. The potential for melon structure to act as a ?lter is discussed: establishing a lower limit to the frequency of sounds that can be propagated through the head. Collectively, the results of this study provide a robust, quantitative and comparative framework for evaluating tissue structures that form a key component of the echolocation apparatus.
机译:齿鲸(冠尾龙)在哺乳动物中具有独特的能力,可以利用专门的组织结构在水下回声定位。甜瓜是由脂肪和结缔组织组成的结构,是产生回声定位束的重要组成部分。众所周知,可以聚焦高频短时回声定位点击。在这里,我们报告牙形突科瓜的形态,以提供对整个牙形突科分类单元的瓜结构的全面了解。这项研究检查了来自十个现存齿牙don科家族中五个的九种齿牙ce科物种(12个单独的标本)。我们使用瓜的计算机断层扫描来建立标准化的定义,以研究结构而不会丢失几何完整性。与瓜的聚焦能力有关的形态特征包括内部密度形貌,瓜的大小和形状,以及与其他前额结构的关系。讨论了瓜结构充当过滤器的可能性:确定可以通过头部传播的声音频率的下限。总体而言,这项研究的结果为评估构成回声定位设备关键组件的组织结构提供了一个可靠,定量和比较的框架。

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