I beg your pardon? Acoustic behaviour of a wild solitary common dolphin who interacts with harbour porpoises

IF 1.5 4区 生物学 Q2 ZOOLOGY
M. Cosentino, David Nairn, M. Coscarella, J. Jackson, J. Windmill
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引用次数: 1

Abstract

ABSTRACT Kylie is a solitary common dolphin who inhabits a restricted area within the Firth of Clyde (Scotland). She spends most of her time around navigational buoys in the Hunterston/Fairlie channel, where she has been seen interacting with harbour porpoises. Recordings from 2016 and 2017 were used to study her acoustic behaviour when seen alone and with a porpoise. Clicks were classified as potential porpoise or dolphin clicks based on the waveform, power spectrum, and spectrogram, as well as direction of arrival, inter-click interval, amplitude, and centroid frequency variations. Kylie emitted clicks exclusively, which were of variable nature, including low, mid, and high-frequency (HF, centroid frequency > 100 kHz) as well as broad or narrowband. Some of Kylie’s HF clicks were similar to porpoise clicks both in the time (e.g. polycyclic) and frequency (e.g. narrowband with most energy between 100 and 150 kHz) domains, which cannot fully be explained by recording geometry and directionality effects.
你说什么?与港鼠海豚互动的野生独居普通海豚的声音行为
摘要:凯莉是一种孤独的普通海豚,栖息在苏格兰克莱德湾的一个禁区内。她大部分时间都在Hunterston/Fairlie海峡的导航浮标周围,有人看到她在那里与港口鼠海豚互动。2016年和2017年的录音被用来研究她单独和与海豚一起观察时的声学行为。根据波形、功率谱和频谱图,以及到达方向、点击间隔、振幅和质心频率变化,将点击分类为潜在的海豚或海豚点击。Kylie只发出咔嗒声,这种咔嗒声具有可变的性质,包括低频、中频和高频(HF,质心频率>100 kHz)以及宽带或窄带。Kylie的一些HF点击在时间(例如多环)和频率(例如能量在100和150kHz之间的窄带)域上都与鼠海豚的点击相似,这不能完全通过记录几何形状和方向性效应来解释。
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来源期刊
CiteScore
4.50
自引率
0.00%
发文量
25
审稿时长
>12 weeks
期刊介绍: Bioacoustics primarily publishes high-quality original research papers and reviews on sound communication in birds, mammals, amphibians, reptiles, fish, insects and other invertebrates, including the following topics : -Communication and related behaviour- Sound production- Hearing- Ontogeny and learning- Bioacoustics in taxonomy and systematics- Impacts of noise- Bioacoustics in environmental monitoring- Identification techniques and applications- Recording and analysis- Equipment and techniques- Ultrasound and infrasound- Underwater sound- Bioacoustical sound structures, patterns, variation and repertoires
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