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鱼类生物声学

Fish bioacoustics.

作者信息

Ladich Friedrich

机构信息

Department of Behavioural Biology, University of Vienna, Althanstrasse 14, 1090 Vienna, Austria.

出版信息

Curr Opin Neurobiol. 2014 Oct;28:121-7. doi: 10.1016/j.conb.2014.06.013. Epub 2014 Jul 23.

Abstract

Bony fishes have evolved a diversity of sound generating mechanisms and produce a variety of sounds. By contrast to sound generating mechanisms, which are lacking in several taxa, all fish species possess inner ears for sound detection. Fishes may also have various accessory structures such as auditory ossicles to improve hearing. The distribution of sound generating mechanisms and accessory hearing structures among fishes indicates that acoustic communication was not the driving force in their evolution. It is proposed here that different constraints influenced hearing and sound production during fish evolution, namely certain life history traits (territoriality, mate attraction) in the case of sound generating mechanisms, and adaptation to different soundscapes (ambient noise conditions) in accessory hearing structures (Ecoacoustical constraints hypothesis).

摘要

硬骨鱼进化出了多种发声机制,并能发出各种各样的声音。与一些类群所缺乏的发声机制形成对比的是,所有鱼类都拥有用于声音探测的内耳。鱼类可能还具有各种辅助结构,如听小骨,以改善听力。鱼类发声机制和辅助听觉结构的分布表明,声学通讯并非其进化的驱动力。本文提出,在鱼类进化过程中,不同的限制因素影响了听觉和发声,即在发声机制方面是某些生活史特征(领地行为、配偶吸引),而在辅助听觉结构方面是对不同声学环境(环境噪声条件)的适应(生态声学限制假说)。

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