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英国诺森伯兰郡沿海白喙斑纹海豚回声定位声纳信号的特征分析与比较。

Characterization and comparison of echolocation clicks of white-beaked dolphins (Lagenorhynchus albirostris) off the Northumberland coast, UK.

机构信息

School of Natural and Environmental Sciences, Newcastle University, Newcastle upon Tyne, NE1 7RU, United Kingdom.

出版信息

J Acoust Soc Am. 2021 Mar;149(3):1498. doi: 10.1121/10.0003560.

Abstract

Odontocetes produce ultrasonic clicks for navigation and foraging. These are commonly categorized as regular or buzz clicks based on the inter-click interval. Buzz clicks are linked to foraging behaviors and may be subdivided into slow buzz clicks for prey chase, and regular buzz clicks for prey capture. This study recorded these three click types produced by white-beaked dolphins (Lagenorhynchus albirostris) off the Northumberland coast, UK. Acoustic parameters (including duration, centroid frequency, and root-mean-squared bandwidth) were calculated and compared across the three click types. The results showed that the regular clicks had shorter durations and higher frequencies than both the buzz click types. The regular buzz clicks had longer durations, lower frequencies, and narrower bandwidths than the slow buzz clicks. Additionally, regardless of click type, about 30% of the clicks had high-frequency (200-250 kHz) secondary peaks and >90% of the clicks displayed spectral peak and notch patterns between 20 and 80 kHz. These findings are useful for future quantitative assessment of the echolocation performance of white-beaked dolphins in the wild. The patterns of spectral peaks and notches identified may facilitate for acoustic identification of this species.

摘要

齿鲸通过产生超声波来进行导航和觅食。这些超声波通常根据两次点击之间的间隔分为规则点击和嗡嗡点击。嗡嗡点击与觅食行为有关,可进一步细分为用于追逐猎物的慢嗡嗡点击和用于捕获猎物的规则嗡嗡点击。本研究记录了在英国诺森伯兰海岸外的白喙海豚(Lagenorhynchus albirostris)产生的这三种点击类型。对声学参数(包括持续时间、中心频率和均方根带宽)进行了计算,并在三种点击类型之间进行了比较。结果表明,规则点击的持续时间比两种嗡嗡点击都短,频率比它们都高。规则嗡嗡点击的持续时间比慢嗡嗡点击长,频率比慢嗡嗡点击低,带宽比慢嗡嗡点击窄。此外,无论点击类型如何,大约 30%的点击具有高频(200-250 kHz)二次峰值,超过 90%的点击在 20-80 kHz 之间显示频谱峰值和陷波模式。这些发现有助于未来对野生白喙海豚的回声定位性能进行定量评估。所确定的频谱峰值和陷波模式可能有助于对该物种进行声学识别。

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