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小鳉快速启动逃逸反应的三维分析

Three-dimensional analysis of the fast-start escape response of the least killifish, .

作者信息

Fleuren Mike, van Leeuwen Johan L, Quicazan-Rubio Elsa M, Pieters Remco P M, Pollux Bart J A, Voesenek Cees J

机构信息

Experimental Zoology Group, Department of Animal Sciences, Wageningen University & Research, Wageningen 6708 WD, The Netherlands.

Experimental Zoology Group, Department of Animal Sciences, Wageningen University & Research, Wageningen 6708 WD, The Netherlands

出版信息

J Exp Biol. 2018 Apr 6;221(Pt 7):jeb168609. doi: 10.1242/jeb.168609.

Abstract

Fish make C-starts to evade predator strikes. Double-bend (DB) C-starts consist of three stages: Stage 1, in which the fish rapidly bends into a C-shape; Stage 2, in which the fish bends in the opposite direction; and a variable Stage 3. In single-bend (SB) C-starts, the fish immediately straightens after Stage 1. Despite fish moving in three-dimensional (3D) space, fast-start responses of adult fish have mainly been studied in a horizontal plane. Using automated 3D tracking of multi-camera high-speed video sequences, we show that both SB and DB fast-starts by adult female least killifish () often contain a significant vertical velocity component, and large changes in pitch (DB up to 43 deg) and roll (DB up to 77 deg) angles. Upwards and downwards elevation changes are correlated with changes in pitch angle of the head; movement in the horizontal plane is correlated with changes in yaw angle of the head. With respect to the stimulus, escape heading correlates with the elevation of the fish at the onset of motion. Irrespective of the initial orientation, fish can escape in any horizontal direction. In many cases, the centre of mass barely accelerates during Stage 1. However, it does accelerate in the final direction of the escape in other instances, indicating that Stage 1 can serve a propulsive role in addition to its preparatory role for Stage 2. Our findings highlight the importance of large-scale 3D analyses of fast-start manoeuvres of adult fish in uncovering the versatility of fish escape repertoire.

摘要

鱼类会做出C形启动动作以躲避捕食者的攻击。双弯(DB)C形启动动作包括三个阶段:第一阶段,鱼迅速弯曲成C形;第二阶段,鱼向相反方向弯曲;以及一个可变的第三阶段。在单弯(SB)C形启动动作中,鱼在第一阶段后立即伸直。尽管鱼在三维(3D)空间中移动,但成年鱼的快速启动反应主要是在水平面上进行研究的。通过对多摄像机高速视频序列进行自动3D跟踪,我们发现成年雌性新月鱼()的单弯和双弯快速启动动作通常都包含显著的垂直速度分量,以及俯仰角(双弯高达43°)和翻滚角(双弯高达77°)的大幅变化。向上和向下的高度变化与头部俯仰角的变化相关;在水平面上的移动与头部偏航角的变化相关。关于刺激,逃逸方向与鱼在运动开始时的高度相关。无论初始方向如何,鱼都可以向任何水平方向逃逸。在许多情况下,质心在第一阶段几乎不加速。然而,在其他情况下,它确实会在逃逸的最终方向上加速,这表明第一阶段除了对第二阶段起准备作用外,还可以起到推进作用。我们的研究结果突出了对成年鱼快速启动动作进行大规模3D分析在揭示鱼类逃逸技能多样性方面的重要性。

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