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鱼类和其他水生动物的电场可视化及相关行为。

Visualization of electric fields and associated behavior in fish and other aquatic animals.

机构信息

A.N. Severtsov Institute of Ecology and Evolution, Moscow, Russia.

M.V. Lomonosov Moscow State University, Moscow, Russia.

出版信息

Behav Res Methods. 2024 Aug;56(5):4255-4276. doi: 10.3758/s13428-023-02175-5. Epub 2023 Aug 14.

Abstract

In some fish lineages, evolution has led to unique sensory adaptations that provide information which is not available to terrestrial animals. These sensory systems include, among others, electroreception, which together with the ability of fish to generate electric discharges plays a role in social communication and object location. Most studies on electric phenomena in aquatic animals are dedicated to selected groups of electric fishes that regularly generate electric signals (Mormyriformes, Gymnotiformes). There exist, however, several species (hitherto described as non-electric) which, though able to perceive electric signals, have now been found to also generate them. In this article, we introduce a tool that we have designed to investigate such electric activity. This required significant adaptations of the equipment used in fish with regular discharge generation. The necessary improvements were realized by using a multielectrode registration setup allowing simultaneous visualization and quantification of behavior and associated electric activity of fish, alone or in groups, with combined electro-video clips. Precise synchronization of locomotor and electric behaviors made it possible to determine the electrically active fish in a group, and also the location of the electrogenic structure inside the fish's body. Our simple registration procedure, together with data presentation, should attract a broad audience of scientists taking up the challenge of uncovering electric phenomena in aquatic animals currently treated as electrically inactive.

摘要

在一些鱼类谱系中,进化导致了独特的感觉适应,为鱼类提供了陆地动物无法获得的信息。这些感觉系统包括电感受,它与鱼类产生电放电的能力一起,在社会交流和物体定位中发挥作用。大多数关于水生动物电现象的研究都专注于那些定期产生电信号的特定电鱼类群体(电鳗目,电鳗目)。然而,也有一些物种(迄今被描述为非电鱼),尽管能够感知电信号,但现在也被发现能够产生电信号。在本文中,我们介绍了一种我们设计的工具,用于研究这种电活动。这需要对用于定期放电鱼类的设备进行重大改造。通过使用多电极记录设置,实现了必要的改进,该设置允许单独或分组同时可视化和量化鱼类的行为和相关电活动,并结合电视频剪辑。运动和电行为的精确同步使得有可能确定群体中具有电活性的鱼类,以及鱼类体内发电结构的位置。我们简单的登记程序,以及数据展示,应该吸引广大的科学家,他们将面临挑战,揭示目前被认为是无电的水生动物的电现象。

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