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常规鱼类动作的控制:将中线运动学与转弯结果联系起来。

The control of routine fish maneuvers: Connecting midline kinematics to turn outcomes.

机构信息

Department of Biology, Biomimicry Research and Innovation Center, University of Akron, Akron, Ohio.

出版信息

J Exp Zool A Ecol Integr Physiol. 2020 Oct;333(8):579-594. doi: 10.1002/jez.2398. Epub 2020 Jul 22.

Abstract

Maneuverability is an important factor in determining an animal's ability to navigate its environment and succeed in predator-prey interactions. Although fish are capable of a wide range of maneuvers, most of the literature has focused on escape maneuvers while less attention has been paid to routine maneuvers, such as those used for habitat navigation. The quantitative relationships between body deformations and maneuver outcomes (displacement of the center of mass and change in trajectory) are fundamental to understanding how fish control their maneuvers, yet remain unknown in routine maneuvers. We recorded high-speed video of eight giant danios (Devario aquepinnatus) performing routine and escape maneuvers and quantified the deformation of the midline, the heading of the anterior body, and the kinematics of the centroid (a proxy for center of mass). We found that both routine and escape behaviors used qualitatively similar independent body bending events, which we curvature pulses, that propagate from head to tail but show quantitative differences in midline kinematics and turn outcomes. In routine maneuvers, the direction change and acceleration of the fish are influenced by both the magnitude of the bending pulse and by the duration of the pulse, whereas in escape maneuvers, only pulse duration influenced direction change and turn acceleration. The bending pulse appears to be the smallest functional unit of a turn, and can function independently or in combination, enabling a fish to achieve a wide range of complex maneuvers.

摘要

可操作性是决定动物在环境中导航并在捕食者-猎物相互作用中取得成功的重要因素。尽管鱼类能够进行多种机动动作,但大多数文献都集中在逃避机动上,而对常规机动的关注较少,例如用于栖息地导航的机动。身体变形与机动结果(质心的位移和轨迹变化)之间的定量关系对于理解鱼类如何控制其机动至关重要,但在常规机动中仍然未知。我们记录了 8 条大鳍鱲(Devario aquepinnatus)进行常规和逃避机动的高速视频,并量化了中线、前体头部的朝向和质心的运动学(质心的代表)。我们发现,常规和逃避行为都使用定性上相似的独立身体弯曲事件,我们将其称为曲率脉冲,这些脉冲从头部传播到尾部,但在中线运动学和转弯结果方面存在定量差异。在常规机动中,鱼的方向变化和加速度既受弯曲脉冲的幅度影响,也受脉冲持续时间的影响,而在逃避机动中,只有脉冲持续时间影响方向变化和转弯加速度。弯曲脉冲似乎是转弯的最小功能单元,可以独立或组合使用,使鱼能够完成广泛的复杂机动动作。

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