Non-linear phenomena: a common acoustic feature of bottlenose dolphin (Tursiops truncatus) signature whistles

Jessica J. Sportelli, Brittany L. Jones, Sam H. Ridgway
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引用次数: 3

Abstract

ABSTRACT Biphonation, deterministic chaos, sidebands and subharmonics are four non-linear phenomena (NLP) that have been identified as common additions in the phonations of animals. NLP have been hypothesised to communicate urgency, caller identification, fitness and arousal/valence states for a variety of species but have yet to be studied in detail for bottlenose dolphins. For this study, the signature whistles of nine bottlenose dolphins residing at the US Navy Marine Mammal Program (MMP) were opportunistically recorded during routine periods of separation from conspecifics. NLP were found to be common additions onto the spectral structure of signature whistles, occurring in 53% of recorded whistles (340/642). Sidebands were the most common NLP type produced. Although less frequently emitted, biphonations were characterised by a significantly longer persistence than the other NLP types. Age had a negative correlation with overall NLP presence, and more specifically, sideband presence. Individual differences in NLP use existed between dolphins; however, all dolphins were recorded producing a minimum of two NLP types. We describe NLP prevalence in dolphin whistles in order to provide a useful baseline for continued research to further identify changes in NLP across behavioural and/or health conditions.
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非线性现象:宽吻海豚(Tursiops truncatus)特征性哨声的常见声学特征
双发声、确定性混沌、边带和次谐波是动物发声中常见的四种非线性现象(NLP)。人们假设NLP可以传达紧急情况、来电者识别、适应性和唤醒/价态,适用于各种物种,但尚未对宽吻海豚进行详细研究。在这项研究中,生活在美国海军海洋哺乳动物计划(MMP)的9只宽吻海豚在与同种动物分离的常规时期偶然地记录了它们的标志性口哨声。NLP被发现是特征哨子光谱结构中常见的添加,出现在53%的记录哨子中(340/642)。侧带是最常见的NLP类型。虽然排放频率较低,但虹吸的特征是比其他NLP类型持续时间长得多。年龄与总体NLP存在呈负相关,更具体地说,与边带存在呈负相关。海豚在NLP使用上存在个体差异;然而,所有海豚都记录了至少产生两种NLP类型。我们描述了海豚口哨声中NLP的流行情况,以便为继续研究进一步确定NLP在行为和/或健康状况中的变化提供有用的基线。
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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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