Leigh Marine Laboratory, Institute of Marine Science, University of Auckland, Auckland, New Zealand.
Department of Biology, Swenson Science Building, University of Minnesota Duluth, Duluth, Minnesota, USA.
J Fish Biol. 2019 Jul;95(1):39-52. doi: 10.1111/jfb.13867. Epub 2018 Dec 27.
Underwater sound is directional and can convey important information about the surrounding environment or the animal emitting the sound. Therefore, sound is a major sensory channel for fishes and plays a key role in many life-history strategies. The effect of anthropogenic noise on aquatic life, which may be causing homogenisation or fragmentation of biologically important signals underwater is of growing concern. In this review we discuss the role sound plays in the ecology of fishes, basic anatomical and physiological adaptations for sound reception and production, the effects of anthropogenic noise and how fishes may be coping to changes in their environment, to put the ecology of fish hearing into the context of the modern underwater soundscape.
水下声音具有方向性,可以传递有关周围环境或发出声音的动物的重要信息。因此,声音是鱼类的主要感觉通道,在许多生活史策略中起着关键作用。人为噪声对水生生物的影响可能导致水下生物重要信号的同质化或碎片化,这一问题越来越受到关注。在这篇综述中,我们讨论了声音在鱼类生态学中的作用、声音接收和产生的基本解剖学和生理学适应、人为噪声的影响以及鱼类如何应对环境变化,以使鱼类听觉生态学与现代水下声音景观联系起来。