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Center of mass motion in swimming fish: effects of speed and locomotor mode during undulatory propulsion

机译:游泳鱼的质心运动:波动性推进过程中速度和运动模式的影响

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Studies of center of mass (COM) motion are fundamental to understanding the dynamics of animal movement, and have been carried out extensively for terrestrial and aerial locomotion. But despite a large amount of literature describing different body movement patterns in fishes, analyses of how the center of mass moves during undulatory propulsion are not available. These data would be valuable for understanding the dynamics of different body movement patterns and the effect of differing body shapes on locomotor force production. In the present study, we analyzed the magnitude and frequency components of COM motion in three dimensions (x: surge, y: sway, z: heave) in three fish species (eel, bluegill sunfish, and clown knifefish) swimming with four locomotor modes at three speeds using high-speed video, and used an image cross-correlation technique to estimate COM motion, thus enabling untethered and unrestrained locomotion. Anguilliform swimming by eels shows reduced COM surge oscillation magnitude relative to carangiform swimming, but not compared to knifefish using a gymnotiform locomotor style. Labriform swimming (bluegill at 0.5 body lengths/s) displays reduced COM sway oscillation relative to swimming in a carangiform style at higher speeds. Oscillation frequency of the COM in the surge direction occurs at twice the tail beat frequency for carangiform and anguilliform swimming, but at the same frequency as the tail beat for gymnotiform locomotion in clown knifefish. Scaling analysis of COM heave oscillation for terrestrial locomotion suggests that COM heave motion scales with positive allometry, and that fish have relatively low COM oscillations for their body size
机译:研究质心(COM)运动是了解动物运动动力学的基础,并且已经广泛用于地面和空中运动。但是,尽管有大量文献描述了鱼类中不同的身体运动方式,但尚无法对波动驱动过程中质心如何运动进行分析。这些数据对于理解不同身体运动方式的动力学以及不同身体形状对运动力产生的影响将是有价值的。在本研究中,我们分析了在四种运动模式下游泳的三种鱼类(鳗鱼,蓝g翻车鱼和小丑刀鱼)的三个维度(x:波动,y:摇摆,z:沉沉)中COM运动的幅度和频率分量。使用高速视频以三种速度运行,并使用图像互相关技术估算COM运动,从而实现不受束缚和不受约束的运动。与鳗鱼游动相比,鳗鳗鱼游动显示COM浪涌振荡幅度减小,但与使用狮not形运动方式的刀鱼相比却没有。相对于在较高速度下以carangiform风格游泳,唇形游泳(0.5体长/秒的blue)显示出减少的COM摇摆。在浪涌方向上,COM的振荡频率发生在角叉形和an形游泳时的尾拍频率的两倍,但与小丑鱼中裸露齿形运动的尾拍频率相同。针对地面运动的COM升沉振荡的比例分析表明,COM升沉运动具有正向异倾角比例,并且鱼类的体型具有相对较低的COM振荡

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