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旋转会增加声学视野吗?基于活海豚与死海豚CT数据的对比模型。

Does rotation increase the acoustic field of view? Comparative models based on CT data of a live dolphin versus a dead dolphin.

作者信息

Wei Chong, Houser Dorian, Erbe Christine, Mátrai Eszter, Ketten Darlene R, Finneran James J

机构信息

Centre for Marine Science and Technology, Curtin University, Perth, WA 6102, Australia.

National Marine Mammal Foundation, 2240 Shelter Island Drive, #200, San Diego, CA 92106, United States of America.

出版信息

Bioinspir Biomim. 2023 Apr 4;18(3). doi: 10.1088/1748-3190/acc43d.

Abstract

Rotational behaviour has been observed when dolphins track or detect targets, however, its role in echolocation is unknown. We used computed tomography data of one live and one recently deceased bottlenose dolphin, together with measurements of the acoustic properties of head tissues, to perform acoustic property reconstruction. The anatomical configuration and acoustic properties of the main forehead structures between the live and deceased dolphins were compared. Finite element analysis (FEA) was applied to simulate the generation and propagation of echolocation clicks, to compute their waveforms and spectra in both near- and far-fields, and to derive echolocation beam patterns. Modelling results from both the live and deceased dolphins were in good agreement with click recordings from other, live, echolocating individuals. FEA was also used to estimate the acoustic scene experienced by a dolphin rotating 180° about its longitudinal axis to detect fish in the far-field at elevation angles of -20° to 20°. The results suggest that the rotational behaviour provides a wider insonification area and a wider receiving area. Thus, it may provide compensation for the dolphin's relatively narrow biosonar beam, asymmetries in sound reception, and constraints on the pointing direction that are limited by head movement. The results also have implications for examining the accuracy of FEA in acoustic simulations using recently deceased specimens.

摘要

当海豚追踪或探测目标时,人们观察到了它们的旋转行为,然而,其在回声定位中的作用尚不清楚。我们使用了一只活体宽吻海豚和一只近期死亡的宽吻海豚的计算机断层扫描数据,以及头部组织声学特性的测量数据,来进行声学特性重建。比较了活体海豚和死亡海豚之间主要前额结构的解剖结构和声学特性。应用有限元分析(FEA)来模拟回声定位咔哒声的产生和传播,计算其近场和远场的波形和频谱,并推导回声定位波束图。活体海豚和死亡海豚的建模结果与其他活体回声定位个体的咔哒声记录高度吻合。有限元分析还用于估计海豚绕其纵轴旋转180°以探测远场中仰角为-20°至20°的鱼类时所经历的声学场景。结果表明,旋转行为提供了更宽的声照射区域和更宽的接收区域。因此,它可能补偿了海豚相对较窄的生物声纳波束、声音接收的不对称性以及受头部运动限制的指向方向的约束。这些结果对于检验使用近期死亡标本进行声学模拟时有限元分析的准确性也具有启示意义。

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