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利用涡流的鱼类会降低肌肉活动。

Fish exploiting vortices decrease muscle activity.

作者信息

Liao James C, Beal David N, Lauder George V, Triantafyllou Michael S

机构信息

Department of Organismic and Evolutionary Biology, Harvard University, Cambridge, MA 02138, USA.

出版信息

Science. 2003 Nov 28;302(5650):1566-9. doi: 10.1126/science.1088295.

Abstract

Fishes moving through turbulent flows or in formation are regularly exposed to vortices. Although animals living in fluid environments commonly capture energy from vortices, experimental data on the hydrodynamics and neural control of interactions between fish and vortices are lacking. We used quantitative flow visualization and electromyography to show that trout will adopt a novel mode of locomotion to slalom in between experimentally generated vortices by activating only their anterior axial muscles. Reduced muscle activity during vortex exploitation compared with the activity of fishes engaged in undulatory swimming suggests a decrease in the cost of locomotion and provides a mechanism to understand the patterns of fish distributions in schools and riverine environments.

摘要

在湍流中或编队游动的鱼类经常会遇到漩涡。尽管生活在流体环境中的动物通常会从漩涡中获取能量,但关于鱼类与漩涡相互作用的流体动力学和神经控制的实验数据却很缺乏。我们使用定量流动可视化和肌电图来表明,鳟鱼会采用一种新的运动模式,通过仅激活其前部轴向肌肉,在实验产生的漩涡之间曲折穿梭。与进行波浪式游泳的鱼类活动相比,在利用漩涡时肌肉活动减少,这表明运动成本降低,并提供了一种机制来理解鱼群在鱼群和河流环境中的分布模式。

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