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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Mechanics of propulsion by multiple fins: kinematics of aquatic locomotion in the burrfish (Chilomycterus schoepfi)
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Mechanics of propulsion by multiple fins: kinematics of aquatic locomotion in the burrfish (Chilomycterus schoepfi)

机译:多鳍推进的力学:墨鱼(Chilomycterus schoepfi)中水上运动的运动学

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摘要

Locomotion in tetraodontiform fishes (puffers and relatives) involves the use of multiple fins for propulsion during swimming. A variety of tertraodontifoim swimming modes have been defined, but the contributions of pectoral, dorsal, anal, and caudalfins to the propulsion in these fish remain largely unknown. We used video analysis to study swimming behaviour of the striped burrfish (Chilomycterus schoepfi). Burrfish swam in a flow tank at speeds of 0.5-6.3 standard body lengths per second, during which all fins oscillated at all speeds. The oscillation frequency range of all fins was 2.1-9.2 Hz, increasing with velocity. Pectoral fins were always out of phase, usually by 180 degrees (alternate left and right beats). Reduced frequency parameters for all fins were high (0.65-12.1) indicating that acceleration reaction is the dominant mechanism of thrust. Phase lag between anal and caudal fins assumed three distinct states which suggests that burrfishes alter the patterns of fin motion in discrete stages analogous to gaits. Rapid oscillation of five fins in various degrees of asynchrony is a mechanism to produce relatively constant thrust from multiple periodic motions.
机译:四齿形鱼类(河豚和近亲)的运动涉及在游泳过程中使用多个鳍来推进。已经定义了多种畸齿龙的游泳方式,但是胸鳍,背鳍,肛门鳍和尾鳍对这些鱼推进力的贡献仍然未知。我们使用视频分析来研究条纹鱼(Chilomycterus schoepfi)的游泳行为。墨鱼以每秒0.5-6.3标准体长的速度在流量罐中游泳,在此期间,所有鳍片均以所有速度振荡。所有鳍片的振荡频率范围为2.1-9.2 Hz,随速度增加。胸鳍总是异相,通常相差180度(左右交替搏动)。所有鳍片的降低的频率参数很高(0.65-12.1),这表明加速反应是推力的主要机制。肛鳍和尾鳍之间的相位滞后假定为三种不同的状态,这表明刺鱼在类似于步态的离散阶段改变鳍运动的模式。五片散热片在不同程度的异步中快速振荡是一种通过多次周期性运动产生相对恒定推力的机制。

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