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鱼类的声景与听觉

Soundscapes and the sense of hearing of fishes.

作者信息

Fay Richard

机构信息

Parmly Hearing Institute, Loyola University Chicago, Chicago, USA.

出版信息

Integr Zool. 2009 Mar;4(1):26-32. doi: 10.1111/j.1749-4877.2008.00132.x.

DOI:10.1111/j.1749-4877.2008.00132.x
PMID:21392274
Abstract

Underwater soundscapes have probably played an important role in the adaptation of ears and auditory systems of fishes throughout evolutionary time, and for all species. These sounds probably contain important information about the environment and about most objects and events that confront the receiving fish so that appropriate behavior is possible. For example, the sounds from reefs appear to be used by at least some fishes for their orientation and migration. These sorts of environmental sounds should be considered much like "acoustic daylight," that continuously bathes all environments and contain information that all organisms can potentially use to form a sort of image of the environment. At present, however, we are generally ignorant of the nature of ambient sound fields impinging on fishes, and the adaptive value of processing these fields to resolve the multiple sources of sound. Our field has focused almost exclusively on the adaptive value of processing species-specific communication sounds, and has not considered the informational value of ambient "noise." Since all fishes can detect and process acoustic particle motion, including the directional characteristics of this motion, underwater sound fields are potentially more complex and information-rich than terrestrial acoustic environments. The capacities of one fish species (goldfish) to receive and make use of such sound source information have been demonstrated (sound source segregation and auditory scene analysis), and it is suggested that all vertebrate species have this capacity. A call is made to better understand underwater soundscapes, and the associated behaviors they determine in fishes.

摘要

在整个进化过程中,水下声景可能在鱼类耳朵和听觉系统的适应过程中发挥了重要作用,对所有鱼类物种都是如此。这些声音可能包含有关环境以及接收声音的鱼类所面临的大多数物体和事件的重要信息,从而使适当的行为成为可能。例如,至少一些鱼类似乎利用来自珊瑚礁的声音进行定向和洄游。这类环境声音应被视为非常类似于“声学日光”,它持续笼罩着所有环境,并包含所有生物都可能用来形成某种环境图像的信息。然而,目前我们通常对撞击鱼类的环境声场的性质以及处理这些声场以分辨多种声源的适应性价值一无所知。我们这个领域几乎完全专注于处理物种特异性通讯声音的适应性价值,而没有考虑环境“噪音”的信息价值。由于所有鱼类都能检测和处理声粒子运动,包括这种运动的方向特性,水下声场可能比陆地声学环境更复杂、信息更丰富。一种鱼类(金鱼)接收和利用此类声源信息的能力已得到证明(声源分离和听觉场景分析),并且有人认为所有脊椎动物物种都有这种能力。人们呼吁更好地了解水下声景以及它们在鱼类中所决定的相关行为。

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