首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Your attention please: increasing ambient noise levels elicits a change in communication behaviour in humpback whales (Megaptera novaeangliae)
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Your attention please: increasing ambient noise levels elicits a change in communication behaviour in humpback whales (Megaptera novaeangliae)

机译:请注意:环境噪声水平的提高引起座头鲸(Megaptera novaeangliae)的交流行为发生变化。

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摘要

High background noise is an important obstacle in successful signal detection and perception of an intended acoustic signal. To overcome this problem, many animals modify their acoustic signal by increasing the repetition rate, duration, amplitude or frequency range of the signal. An alternative method to ensure successful signal reception, yet to be tested in animals, involves the use of two different types of signal, where one signal type may enhance the other in periods of high background noise. Humpback whale communication signals comprise two different types: vocal signals, and surface-generated signals such as ‘breaching’ or ‘pectoral slapping’. We found that humpback whales gradually switched from primarily vocal to primarily surface-generated communication in increasing wind speeds and background noise levels, though kept both signal types in their repertoire. Vocal signals have the advantage of having higher information content but may have the disadvantage of loosing this information in a noisy environment. Surface-generated sounds have energy distributed over a greater frequency range and may be less likely to become confused in periods of high wind-generated noise but have less information content when compared with vocal sounds. Therefore, surface-generated sounds may improve detection or enhance the perception of vocal signals in a noisy environment.
机译:高背景噪声是成功检测信号和感知预期声信号的重要障碍。为了克服这个问题,许多动物通过增加信号的重复率,持续时间,幅度或频率范围来修改其声信号。确保成功接收信号的另一种方法(尚待在动物中进行测试)涉及使用两种不同类型的信号,其中一种信号类型在背景噪声较高的时期会增强另一种信号类型。座头鲸通讯信号包括两种不同的类型:声音信号和表面生成的信号,例如“违反”或“打耳光”。我们发现座头鲸在增加风速和背景噪声水平的同时,已从原声通信逐渐转换为主要由表面生成的通信,尽管这两种信号类型都保留在它们的指令表中。声音信号的优点是具有较高的信息内容,但可能具有在嘈杂的环境中丢失此信息的缺点。表面产生的声音具有分布在较大频率范围内的能量,并且在高风产生的噪声期间不太可能变得混乱,但是与声音相比,信息内容较少。因此,在嘈杂的环境中,表面产生的声音可以改善检测或增强对声音信号的感知。

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