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通过港湾海豹()检测和定向辨别单个漩涡环。

Detection and direction discrimination of single vortex rings by harbour seals ().

机构信息

University of Rostock, Institute for Biosciences, Sensory and Cognitive Ecology, Albert-Einstein-Straße 3, Rostock 18059, Germany

University of Rostock, Institute for Biosciences, Sensory and Cognitive Ecology, Albert-Einstein-Straße 3, Rostock 18059, Germany.

出版信息

J Exp Biol. 2018 Apr 25;221(Pt 8):jeb170753. doi: 10.1242/jeb.170753.

Abstract

Harbour seals possess highly sensitive vibrissae that enable them to track hydrodynamic trails left behind by a swimming fish. Most of these trails contain vortex rings as a main hydrodynamic component. They may reveal information about their generator as the trails differ depending on the fish species, the fish's body shape, size and swimming style. In addition, fish generate single vortex rings in diverse natural situations. In this study, the ability of blindfolded stationary harbour seals to detect and analyse single vortex rings regarding directional information has been investigated. In three different behavioural experiments, the animals were trained to respond to single artificially generated vortex rings. The results show that harbour seals are able to respond to a variety of different vortex rings upon vibrissal stimulation. The investigation of the minimum hydrodynamically perceivable angle revealed that it is at least as small as 5.7 deg, which was the smallest adjustable angle. Moreover, harbour seals are capable of analysing the travel direction of a vortex ring perceived by the mystacial vibrissae irrespective of whether the vibrissae were stimulated ipsilaterally or contralaterally. In situations in which no complex hydrodynamic trail is available, it is advantageous for a hunting seal to be able to extract information from a single vortex ring.

摘要

港海豹拥有高度敏感的触须,可以追踪鱼类游动时留下的水动力尾迹。这些尾迹的主要水动力成分大多是涡环。由于不同鱼类、鱼的体型、大小和游动方式会产生不同的尾迹,因此它们可能会揭示有关其产生者的信息。此外,鱼类在各种自然情况下都会产生单个涡环。在这项研究中,研究人员研究了蒙住眼睛的静止港海豹在关于方向信息方面检测和分析单个涡环的能力。在三个不同的行为实验中,动物被训练对单个人为产生的涡环做出反应。结果表明,海豹在触须受到刺激时能够对各种不同的涡环做出反应。对最小的水动力可感知角度的研究表明,该角度至少为 5.7°,这是可调节的最小角度。此外,港海豹能够分析通过触须感知到的涡环的行进方向,而不管触须是同侧刺激还是对侧刺激。在没有复杂水动力尾迹的情况下,对于一只正在捕猎的海豹来说,能够从单个涡环中提取信息是非常有利的。

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